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Bioengineering Scholarship Report 2019-2020

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2019 | 2020

SCHOLARSHIP REPORT BIOENGINEERING Chair’s Message | 1 Quick Facts | 2

Honors | 6 Our Faculty | 8


We are a leader in experiential education and interdisciplinary research, focused on Engineering for Society

DEAR COLLEAGUES, FRIENDS, AND STUDENTS,

The Department of Bioengineering is the newest department in Northeastern’s College of Engineering. Building on the success of its PhD program, our department added BS and MS degree programs in the 20152016 academic year. We are now in an era of rapid growth with plans to continue to increase faculty size as our student body expands. Our research into the fundamentals of cell and tissue engineering, biomedical device design, biomedical imaging and signal processing, biomechanics and biocomputing is providing a foundation on which a vibrant bioengineering community is developing—a community that spans the entire university. With over 40 affiliated faculty, the bioengineering department offers research opportunities that encompass the entire breadth of biological and biomedical engineering. Our co-op program is working with companies across the sector to provide our students with a broad range of opportunities within the Boston biotech industry and beyond. Through the co-op program, we identify opportunities that make it possible for our students to work in research and development areas that most excite them. I invite you to learn more about our new and fast-growing Department of Bioengineering. Our Scholarship Report provides a window into the many activities of our faculty and the energy and breadth of their research. FOR MORE DETAILS, VISIT OUR WEBSITE AT BIOE.NORTHEASTERN.EDU.

Sincerely, Lee Makowski Department Chair Bioengineering l.makowski@northeastern.edu

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QUICK FACTS BIOENGINEERING

747

NEW HIRES

Students

Elizabeth Libby

PhD, University of Pennsylvania

Mingyang Lu

PhD, Baylor University

54% Students are Women

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32%

Graduate Enrollment Growth (2018 to 2019)

Young Investigator Awards

71

TENURED/ TENURE-TRACK Including T/TT Affiliated Faculty

National Academy Member

Herbert Levine, University Distinguished Professor

COLLEGE OF ENGINEERING With 189 tenured/tenuretrack faculty and 18 multidisciplinary research centers and institutes with funding by eight federal agencies, the College of

5

Engineering Departments

95

YOUNG INVESTIGATOR Awards

TOTAL ENROLLMENT (2019)

Engineering is a leader in experiential education and interdisciplinary research, with a focus on discovering solutions to global challenges to benefit society.

1038

Graduate Students Placed on Co-op (2019-20)

Including 50 NSF CAREER Awards, and 18 DOD Young Investigator Awards

8460

53% Graduate 47% Undergraduate

Enrollment Growth (2014 to 2019)

115% MS 36% PhD 24% BS 2


FACULTY BY RESEARCH AREAS Biomechanics, Biotransport and MechanoBiology

Computational and Systems Biology

Imaging, Instrumentation, and Signal Processing

Molecular, Cell, and Tissue Engineering

Ambika Bajpayee

Anand Asthagiri

Samuel Chung

Anand Asthagiri

Chiara Bellini

Chiara Bellini

Heather Clark

Ambika Bajpayee

Guohao Dai

Erel Levine

Qianqian Fang

Samuel Chung

Jessica Oakes

Herbert Levine

Mark Niedre

Guohao Dai

Harikrishnan Parameswaran

Elizabeth Libby

Sara Rouhanifard

Jiahe Li

Jeffery Ruberti

Mingyang Lu

Mohammad Abbas Yaseen

Lee Makowski

Sandra Shefelbine

Mona Minkara Jessica Oakes Nikolai Slavov Eduardo Sontag

Shefelbine Hopes Fulbright Award Creates Opportunities Beyond Her Research Refresh, rejuvenate, and develop new collaborations. Those goals are just the tip of the iceberg for Professor Sandra Shefelbine, mechanical and industrial engineering, jointly appointed in bioengineering, who was recently awarded a Fulbright Futures Scholarship to study skeletal mechanobiology at the University of Melbourne from January to August 2021. Shefelbine wants to explore how mechanical forces influence bone development, in particular with elite athletes. Specifically, single sport youth athletes can develop hip issues. Basketball, ice hockey, and soccer players can sometimes have their femur bone form differently. “As an engineer, this is fascinating,” Shefelbine said. “What about how those sports impact how the bone grows? This condition forms during adolescence but can affect performance at the professional level. Nobody knows what is causing it, but if we can learn that, we can then prevent it.” Called femoroacetabular impingement (FAI), the condition occurs when the shape of the hip joint changes. Participation in adolescent sports can potentially affect how bones are shaped as a young athlete is growing. It’s important to study how mechanics affect bones as they grow, Shefelbine explained. From there, different forms of therapy can be developed to help prevent FAI from happening.

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Shefelbine is currenting studying FAI in elite youth athletes and has characterized “hip motion during sports practice, analyzing changes in proximal femoral head morphology using medical imaging, and measuring balance of hip musculature.” At the University of Melbourne, Shefelbine said she will be working in mechanical engineering and biomedical engineering. First, Shefelbine will focus on more whole body questions, looking at how people move. Along with Marcus Pandy, a Professor of Mechanical and Biomedical Engineering at the University of Melbourne, Shefelbine will utilize his data set on people measured in a full body motion capture lab. The Fulbright research will also integrate research on injuries that sprinters often sustain in their hamstrings. Cameron Nurse, who recently received his Master’s in bioengineering, was a varsity sprinter during his undergrad at Boston University. Nurse sustained multiple hamstring injuries and was curious as to why. “We measured mechanics during sprinting and found interesting lopsidedness,” Shefelbine said. “We want to know: are they having injuries because they are lopsided or vice versa? We will probe that with a computational model. We want to understand, if you run a certain way, what implications does that have for your muscles?” Additionally, Shefelbine said she will be working with Kathryn Stok, another professor at the University of Melbourne. Stok’s research focused on cartilage. Seeing how the mechanics of cartilage change in arthritis, for example, can help in understanding what can lead to a joint getting to that level, Shefelbine said. While the Fulbright research could lead to improvements with athletic training and even prevent future injury, Shefelbine added that she loves how the Fulbright scholarship also involves being an ambassador for your country. “At this time, our country needs good ambassadors,” Shefelbine said. “Through academic exchanges like this, we can show that our country is more than what is seen on the news. The focus is not just on how many papers you’re going to publish with your research. You’re a representative of the United States.”


Slavov Named Paul G. Allen Distinguished Investigator for Pioneering Single Cell Proteomics Research Bioengineering Assistant Professor Nikolai Slavov was recently named a prestigious Allen Distinguished Investigator, and was awarded a $1.5 million three-year grant to further his novel research on single cell proteomics. The Paul G. Allen Frontiers Group supports early-stage research with the potential to reinvent entire fields. Slavov is the first from Northeastern to receive the award. Previously, Slavov’s group developed mass spectrometry technologies for quantifying thousands of proteins across many single cells. The technology, Single Cell ProtEomics by Mass Spectrometry, offers a cheaper and faster technique enabling researchers to analyze a much larger number of single cells and gain much more accurate data. The proteins in our cells are complex molecules working in synchrony. They orchestrate multifaceted chemical reactions resulting in the high-level functions that keep people alive and well, from growing tissue to fighting disease. Our bodies house thousands of different types of cells, which contain tens of thousands—if not millions—of different proteins. With many proteins responsible for biomechanisms involved in crucial functions like the development of cancer cells, scientists need to increase the number of analyzed protein copies to thousands to capture single cell protein levels accurately. With the new grant, Slavov will further his research in quantifying protein dynamics in single cells, which can help us better understand the exact sequence of signaling events that guide cells during development. “What I’m really most excited about is having the ability to carry out the research,” Slavov says. “What I have proposed is very ambitious, but also very promising.” “All complex organisms start from a single cell, which then divides, and the cells differentiate,” he says. “We haven’t been able to trace this path of differentiation and information processing in complex organisms.” While there are many methods to measure single cells, all of these methods tend to measure only one snapshot of a cell, Slavov says. They capture the way a cell looks at one or two points in time.

Computational approaches indirectly infer what the cell dynamics might be, but they’re indirect. “This research will directly measure up to a dozen and more time points that can give us information not just about the state of a cell at particular time, but give us information about its history,” he explains. “It’s not just the abundance of proteins, but how synthesis and degradation rates are regulated in its history.” While there has been exciting progress in DNA- and RNA-based methods, with a certain degree of tracing cells, this is still only an indirect way to measure signaling mechanisms that regulate those changes. Slavov hopes to directly identify the signals that instruct cells to become different cell types. “When we understand the signals, how they occur in normal development, we should be in a better position to ‘replay this music’ in stem cells, for example,” he says. “We could engineer cell types of specific properties, or engineer them for regenerative therapies. ”

Working toward a brighter future

Slavov stressed that his immediate goal is to further basic research, continuing to learn more about what the proteins in specific cells do and how the methods can be replicated. But the research offers the potential for direct medical applications in the future. “We could study how immune cells interact with cancer cells,” Slavov says. “We could have a single snapshot of an interaction and follow it in time. It could resolve longstanding controversies where we haven’t had direct data to determine what the mechanism is.” “Allen Distinguished Investigators are pioneers who aim to upend how we ‘crack’ hard biological mysteries,” says Kathy Richmond, Ph.D., M.B.A., Director of The Paul G. Allen Frontiers Group. “Such technological breakthroughs could reveal the protein ‘drivers’ in disease and help further the development of more effective cancer therapies and treatments for autoimmune diseases.” “I hope this novel research and its impact attracts more people to the emerging field of single cell protein analysis,” Slavov says. “There is a tremendous amount of potential in this field, but currently there are not enough people to develop it to its full potential.” This research was supported by an Allen Distinguished Investigator Award, a Paul G. Allen Frontiers Group advised grant of the Paul G. Allen Family Foundation. Visit allenfrontiersgroup.org.

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Courtesy of Kritika Singh

Distinctive Excellence— 2020 Rhodes Scholar Kritika Singh, E’20, has achieved a rare distinction by being named a Rhodes Scholar, a Truman Scholar, and a Goldwater Scholar. When Kritika Singh, E’20, bioengineering, was announced as one of 32 Rhodes Scholars for 2020, she achieved the rare distinction of being named a Rhodes Scholar, Truman Scholar, and Goldwater Scholar. Singh, a member of the University Scholars and Honors Programs at Northeastern, will leverage full financial support from the Rhodes Scholarship to pursue a doctorate in biomedical sciences at Oxford University. Following her studies in the UK, Singh hopes to return to the U.S. and attend medical school. Her ultimate goal is to become a true “triple threat” by addressing critical emerging diseases as a physician, scientist, and advocate. “In order to conquer the world’s most pressing health challenges, we need to bring together biomedical research, clinical practice, and health policy. By being at the intersection of those fields, I hope to assume a leadership role and encourage professionals to collaborate more freely, across disciplines and national boundaries,” she explains. “We’re incredibly proud of Kritika for winning these three major awards in three years―but even more proud of the person she is,” says Jacqueline Isaacs, interim dean of Northeastern’s College of Engineering. “With an infectious passion to make a difference in people’s lives, Kritika has continuously forged ahead, embracing all that Northeastern has to offer to reach her bold and admirable ambitions. She embodies our mission of developing the next generation of engineering leaders to solve global challenges, and we are so excited to see where her career path will take her.”

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Making an early impact

Although just 22 years old, Singh has already made an extraordinary impact. After becoming aware of the continuing prevalence of malaria in India―despite the availability of affordable prevention―Singh started a nonprofit organization called Malaria Free World as a high school sophomore in Virginia. She traveled to India to speak with students and faculty in regions affected by malaria, and met with researchers and scientists at the National Institute of Malaria Research. This organization is still actively raising awareness and funds today. With support from Northeastern’s Office of Undergraduate Research and Fellowships and the cooperative education program, Singh has continued to focus on the science behind malaria while expanding her scope to conduct research at the intersection of chemical biology and bioengineering at Massachusetts General Hospital, under the direction of Ralph Mazitschek. Singh’s research there has focused on studying patients’ resistance to antimalarial drugs in order to develop new pharmaceuticals, as well as investigating the role of genetics in determining malaria outcomes. At Northeastern, Singh has founded the NU Global Health Initiative (NUGHI), which fosters interdisciplinary collaboration among students, medical practitioners, and public policy experts. Leveraging a Service/Research Project Award from the University, Singh organized the Northeastern Global Health Initiative Conference in October 2018. The largest student-led undergraduate global health conference in the nation, this event focused on wide-ranging topics such as tropical disease prevention, innovative surgical procedures, HIV prevention, the environment’s effects on human health and the role of robots in tracking epidemics. An overarching theme was the role of government and public policy in fostering better health care. “Kritika is a unique individual because she innately understands that public health issues cannot be addressed via science alone,” notes Lee Makowski, professor and chair of the Department of Bioengineering at Northeastern. “Her skills in public policy, advocacy, and leadership have distinguished her from a young age. She truly embodies the multidisciplinary mindset of the College of Engineering at Northeastern.”


Faculty Honors and Awards Selected Highlights Associate Professor Guohao Dai, bioengineering, and Assistant Professors Ryan Koppes and Abigail Koppes, chemical engineering, were awarded $200K from the American Heart Association (AHA) Innovative Project Award for “Bioengineer an Autonomic Neurovascular System to Explore the Innervation of Arterial Grafts. Assistant Professor Nikolai Slovav, bioengineering, was recently named a prestigious Allen Distinguished Investigator, and was awarded a $1.5 million three-year grant to further his novel research on single cell proteomics. The Paul G. Allen Frontier program supports early-stage research with the potential to reinvent entire fields. See page 4.

Research of University Distinguished Professor Eduardo Sontag, electrical and computer engineering, jointly appointed in bioengineering, on “In Vitro Implementation of Robust Gene Regulation in a Synthetic Biomolecular Integral Controller” was published in the journal Nature Communications.

Professor Sandra Shefelbine, mechanical and industrial engineering, jointly appointed in bioengineering, was awarded a Fulbright Futures Scholarship to study skeletal mechanobiology at the University of Melbourne. See page 3. She was also named a Fellow of the American Institute for Medical and Biological Engineering (AIMBE) in recognition of “her distinguished and continuing achievements in medical and biological engineering.” Additionally, Shefelbine, in collaboration with the College of Science, was awarded a $650K National Science Foundation grant for “Manipulating Fluid Flow in Mechanoadaptation of Bone.”

COVID-19 Research Highlights

Bioengineering (BioE) Affiliated Faculty Mary Jo Ondrechen, BioE Assistant Professor Mona Minkara, and College of Science Assistant Professor Steven Lopez were awarded a $73K National Science Foundation RAPID grant for “Undergraduate Research in Modeling and Computation for Discovery of Molecular Probes for SARS-CoV-2 Proteins.”

Professor Jeffrey Ruberti, bioengineering, in collaboration with the University of California-Los Angeles and University of Massachusetts Amherst, was awarded a $150K National Science Foundation RAPID grant for “LowCost, Non-invasive, Fast Sample Collection System for COVID-19 Viral Load Level Diagnosis: Point-of-Care and Environmental Testing.” Bioengineering alumnus Craig Smallwood, PhD’18, invented a respiratoryassist device as an alternative to a ventilator for low-resource environments. Lee Makowski, professor and chair of the Department of Bioengineering, in collaboration with physicians at Korle Bu Hospital in Ghana, has made the first few of these devices available for use on patients suffering from respiratory distress.

View all department news.

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Student Honors and Awards Selected Highlights Kritika Singh, E’20, bioengineering, is one of only 32 students from the U.S. selected as a Rhodes Scholar. See page 4. She was also named the winner of the Harold D. Hodgkinson Achievement Award for 2020, one of the highest honors a senior can receive, as well as named an NIH OxCam Scholar.

Jake Potts, BS/MS’20, bioengineering, was awarded a prestigious Fulbright Fellowship. He will conduct research at Sorbonne University in Paris to try to determine how certain cancerous mutations happen as DNA is “misrepaired,”—a process that occurs when radiation or harsh chemicals break the two strands of our DNA, and our cells respond by trying to repair this damage. Kerry Eller, E’21, bioengineering, has been selected to receive the Truman Scholarship, the most prestigious award for junior-level undergraduate citizens of the United States who possess outstanding leadership skills and are interested in a career in public service.

PhD Student Spotlight Morris Vanegas, PhD’21

BIOENGINEERING ADVISED BY ASSOCIATE PROFESSOR QIANQIAN FANG, BIOENGINEERING

Morris Vanegas obtained his BS and MS degrees from MIT before joining the Computational Optics and Translational Imaging Lab (COTI Lab) in the Department of Bioengineering as a PhD student in the Fall of 2016. Since then, he has been the driving force for a number of research projects. In a project funded by the U.S. Agency for International Development (USAID), Morris applied his extensive skills in digital fabrication to develop mobile phone oximeters prototypes for use in low-income countries. He also contributed to a successful NIH BRAIN Initiative R01 grant submission to develop a wearable optical brain imaging system that has since led to a patent application. Morris has been leading the hardware and software design, fabrication, and testing of the probe, resulting in exciting progress toward building a oneof-a-kind modular, non-invasive brain imaging probe for monitoring stroke recovery. Outside of academia, Morris co-founded The Second L, which provides new professionals and those seeking transitions in careers and personal life with exposure to growth and wellness tools through experience-based mentorship models. He is also the acting director of TDC Makerspace, MIT’s first residential-based fabrication shop. Morris is a 2019 Latino 30 Under 30 recipient, a 2018 MIT Impact Fellow, and a 2017 Dent the Future Scholar. SEE RECENT PHD GRADUATE DISSERTATION SUMMARIES ON PAGE 41.

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Faculty

Mansoor Amiji

Rouzbeh Amini

University Distinguished Professor, Professor of Pharmaceutical Sciences, Chemical Engineering; affiliate faculty, Bioengineering

Associate Professor, Mechanical and Industrial Engineering; Associate Professor, Bioengineering

PhD, Purdue University, 1992 coe.northeastern.edu/people/amijimansoor

PhD, University of Minnesota, Minneapolis, 2010 coe.northeastern.edu/people/aminirouzbeh

Scholarship focus: polymeric biomaterials, drug delivery systems, nanomedical technologies Honors and awards: Fellow, American Association of Pharmaceutical Scientists (AAPS); Fellow, Controlled Release Society; Charivate Analytics Highly Cited Author (top 1%); Purdue University School of Pharmacy Distinguished Alumni Award

SELECTED PUBLICATIONS J. Bae, N. Parayath, W. Ma, M. Amiji, N. Munshi, K. Anderson Bcma Peptide Engineered Nanoparticles Enhance Induction and Function of Antigen Specific Cd8+ Cytotoxic T Lymphocytes Against Multiple Myeloma, Nature – Leukemia, 34, 2020, 210–223 N.N. Parayath, S. Padmakumar, M. Amiji Extracellular Vesicle-Mediated Nucleic Acid Transfer and Reprogramming in the Tumor Microenvironment, Cancer Letters, 482(10), 2020, 33-43 G. Ahmad, G. Mackenzie, J. Egan, M. Amiji Dha-Sbt-1214 Taxoid Nanoemulsion and Anti-Pd-L1 Antibody Combination Therapy Enhances Antitumor Efficacy in a Syngeneic Pancreatic Adenocarcinoma Model, Molecular Cancer Therapeutics, 18(11), 2019, 961-1972 D. Chen, N. Parayath, S. Ganesh, W. Wang, M. Amiji Role of Apolipoprotein-and Vitronectin-Enriched Protein Corona on Lipid Nanoparticles for in Vivo Targeted Delivery and Transfection of Oligonucleotides in Murine Tumor Models, Nanoscale, 11, 2019, 18806–18824

SELECTED RESEARCH PROJECTS Development and Validation of a Novel Cas13a and Nanoparticle Guide-RNA Delivery System that Allows Precise Ablation of Host Macrophage Populations in a Humanized Mouse Model Principal Investigator, Jackson Laboratories on a National Institutes of Health Direct CNS Delivery System for BDNF AntagoNATs using Heterotopic Mucosal Grafting for the Treatment of Parkinson’s Disease Principal Investigator, National Institutes of Health

Scholarship focus: biomechanics, mechanobiology, biotransport

SELECTED PUBLICATIONS S.D. Salinas, M.M. Clark, R. Amini The Effects of− 80° C Short-Term Storage on the Mechanical Response of Tricuspid Valve Leaflets, Journal of Biomechanics, 98, 2020, 109462 V.S. Thomas, V. Lai, R. Amini A Computational Multi-Scale Approach to Investigate Mechanically-Induced Changes in Tricuspid Valve Anterior Leaflet Microstructure, Acta Biomaterialia, 94, 2019, 524-535 K. Amini Khoiy, K.T. Asgarian, F. Loth, R. Amini Dilation of Tricuspid Valve Annulus Immediately After Rupture of Chordae Tendineae in Ex-Vivo Porcine Hearts, PLOS One, 13(11), 2018, e0206744 A.D. Pant, P. Gogte, V. Pathak-Ray, S.K. Dorairaj, R. Amini Increased Iris Stiffness in Patients with a History of Angle-Closure Glaucoma: An Image-Based Inverse Modeling Analysis, Investigative Ophthalmology & Visual Science, 59(10), 2018, 4134-4142 S.H. Pahlavian, J. Oshinski, X. Zhong, F. Loth, R. Amini Regional Quantification of Brain Tissue Strain Using Displacement-Encoding with Stimulated Echoes Magnetic Resonance Imaging, Journal of Biomechanical Engineering, 140(8), 2018

SELECTED RESEARCH PROJECTS In-vivo Assessment of Human Iris Mechanical Properties Principal Investigator, BrightFocus Foundation Multi-scale Assessment of Biomechanical Alterations in Tricuspid Valves Following Pregnancy Principal Investigator, National Science Foundation

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Faculty

Javier Apfeld

Anand Asthagiri

Assistant Professor, Biology Department; affiliated faculty, Bioengineering

Associate Professor, Bioengineering; affiliated faculty, Chemical Engineering

PhD, University of California San Francisco, 1999 coe.northeastern.edu/people/apfeldjavier

PhD, Massachusetts Institute of Technology, 2000 coe.northeastern.edu/people/ asthagiri-anand

Scholarship focus: we study how the brain regulates aging and resilience to oxidative stress in the nematode C. elegans

Scholarship focus: cell and tissue engineering, quantitative principles of cancer cell biology and developmental biology

Honors and awards: NSF CAREER Award, HHMI Predoctoral Fellowship

SELECTED PUBLICATIONS

SELECTED PUBLICATIONS J.A. Schiffer, F.A. Servello, W.R. Heath, F.R.G Amrit, S.V. Stumbur, M. Eder, O.M. Martin, S.B. Johnsen, J.A. Stanley, H. Tam, S.J. Brennan, N.G. McGowan, A.L. Vogelaar, Y. Xu, W.T. Serkin, A. Ghazi, N. Stroustrup, J. Apfeld Caenorhabditis elegans Processes Sensory Information to Choose Between Freeloading and Self-Defense Strategies, Elife, 2020 J.A. Stanley, S.B. Johnsen, J. Apfeld The SensorOverlord Predicts the Accuracy of Measurements with Ratiometric Biosensors, bioRxiv, 2020 J. Apfeld, S. Alper What Can We Learn About Human Disease from the Nematode C. elegans?, Methods in Molecular Biology, 2018 J. Apfeld, W. Fontana Age-Dependence and Aging-Dependence: Neuronal Loss and Lifespan in a C. elegans Model of Parkinson’s Disease, Biology (Basel), 2017 N. Stroustrup, W.E. Anthony, Z.M. Nash, V. Gowda, A. Gomez, I.F. López-Moyado, J. Apfeld, W. Fontana The temporal scaling of Caenorhabditis elegans ageing, Nature, 2016

SELECTED RESEARCH PROJECTS Intercellular Regulation of Protein Oxidation during Aging Principal Investigator, National Science Foundation Modulation of Organismic Resilience by the Microbiome Co-Principal Investigator, Northeastern Tier 1

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D.F. Milano, R.J. Natividad, Y. Saito, C.Y. Luo, S.K. Muthuswamy, A.R. Asthagiri Positive Quantitative Relationship Between EMT and Contact-Initiated Sliding on Fiber-Like Tracks, Biophysical Journal, 111(7), 2016, 1569-1574 D.F. Milano, N.A. Ngai, S.K. Muthuswamy, A.R. Asthagiri Regulators of Metastasis Modulate the Migratory Response to Cell Contact Under Spatial Confinement, Biophysical Journal, 110(8), 2016, 1886-1895 D.I. Walsh III, M.L. Lalli, J.M. Kassas, A.R. Asthagiri, S.K. Murthy Cell Chemotaxis on Paper for Diagnostics, Analytical Chemistry, 87(11), 2015, 5505-5510 M.L. Lalli, A.R. Asthagiri Collective Migration Exhibits Greater Sensitivity but Slower Dynamics of Alignment to Applied Electric Fields, Cellular and Molecular Bioengineering, 8(2), 2015, 247-257 K. Blogovic, E.S. Gong, D.F. Milano, R.J. Natividad, A.R. Asthagiri Engineering Cell-Cell Signaling, Current Opinion in Biotechnology, 24(5), 2013, 940-947 K. Kushiro, A.R. Asthagiri Modular Design of Micropattern Geometry Achieves Combinatorial Enhancements in Cell Motility, Langmuir, 28(9), 2012, 4357-4362 J.H. Kim, A.R. Asthagiri Matrix Stiffening Sensitizes Epithelial Cells to EGF and Enables the Loss of Contact Inhibition of Proliferation, Journal of Cell Science, 124, 2011, 1280-1287 J.H. Kim, L.J. Dooling, A.R. Asthagiri Intercellular Mechanotransduction During Multicellular Morphodynamics, Royal Society Interface, 7(3), 2010, 341-350 C.A. Giurumescu, P.W. Sternberg, A.R. Asthagiri Predicting Phenotypic Diversity and the Underlying Quantitative Molecular Transitions, PLoS Computational Biology, 5(4), 2009, 1-13


Faculty

Joseph Ayers Professor, Marine and Environmental Sciences; affiliated faculty: Bioengineering, Civil and Environmental Engineering, Electrical and Computer Engineering

PhD, University of California, Santa Cruz, 1975 coe.northeastern.edu/people/ayersjoseph Scholarship focus: development of underwater robots for civil infrastructure and explosive sensing; neurophysiology and behavior; biomimetics; synthetic biology

SELECTED PUBLICATIONS R.T. Myers, J. Ayers A Nitric Oxide Sensor Fabricated Through E-Jet Printing Towards Use in Bioelectronics Interfaces, Journal of Applied Electrochemistry, 48, 2018, 1-11 L.L. McGrath, S.V. Vollmer, S.T. Kaluziak, J. Ayers De Novo Transcriptome Assembly for the Lobster Homarus Americanus and Characterization of Differential Gene Expression Across Nervous System Tissues, BMC Genomics, 17, 2016, 3-12 J. Ayers Underwater Vehicles Based on Biological Intelligence, ASME Journal of Dynamic Systems, Measurement and Control, 138, 2016, 1-5 L. Zhu, A.I. Selverston, J. Ayers The Role of Ih in Differentiating the Dynamics of the Gastric Mill and Pyloric Neurons in the Stomatogastric Ganglion of the Lobster, Homarus Americanus, Journal of Neurophysiology, 115(5), 2016, 2434-2445 J. Lu, J. Yang, Y.-B. Kim, J. Ayers, K.K. Kim Implementation of Excitatory CMOS Neuron Oscillator for Robot Motion Control Unit, Journal of Semiconductor Technology and Science, 14(4), 2014, 383-390 J. Ayers, D. Blustein, A. Westphal A Conserved Biomimetic Control Architecture for Walking, Swimming and Flying Robots, Lecture Notes in Artificial Intelligence, 2012, 1-12

SELECTED RESEARCH PROJECTS Utilizing Synthetic Biology to Create Programmable Micro Bio-Robots Co-Principal Investigator, Office of Naval Research

Ambika Bajpayee Assistant Professor, Bioengineering; affiliated faculty, Mechanical Engineering and Global Resilience Institute

PhD, Massachusetts Institute of Technology, 2015 coe.northeastern.edu/people/ bajpayee-ambika Scholarship focus: drug delivery; bio-electrostatics; transport phenomena in biological systems; biomechanics; osteoarthritis Honors and awards: US Department of Defense Discovery Award, National Institute of Health Trailblazer Award, MIT Women of Excellence, Meredith Kamm Memorial Award in Mechanical Engineering

SELECTED PUBLICATIONS C. Young, A. Vedadghavami, A.G. Bajpayee Bioelectricity For Drug Delivery: The Promise of Cationic Therapeutics, Bioelectricity, 2020 T. He, C. Zhang, A. Vedadghavami, S. Mehta, H. Clark, R. Porter, A.G. Bajpayee Multi-Arm Avidin Cationic Nano-Construct as a Cationic Carrier for Intra-Cartilage Delivery of Small Molecules, Journal of Controlled Release, 318, 2020, 109-123 S. Mehta, S. Akhtar, R.M. Porter, P. Onnerfjord, A.G. Bajpayee IL-1Ra Is More Effective in Suppressing Cytokine Induced Catabolism in Cartilage-Synovium Co-Culture Compared to Cartilage Monoculture, Arthritis Research and Therapy, 21, 2019, 238 A. Vedadghavami, E.K. Wagner, S. Mehta, T. He, C. Zhang, A.G. Bajpayee Cartilage Penetrating Cationic Peptide Carriers for Applications in Drug Delivery to Avascular Negatively Charged Tissues, Acta Biomaterialia, 93, 2018, 258-269 A.G. Bajpayee, A.J. Grodzinsky Cartilage Targeting Drug Delivery: Can Electrostatic Interactions Help?, Nature Rheumatology Reviews, 13, 2017, 183-193

SELECTED RESEARCH PROJECTS Cationic Contrast Agents for Cartilage Imaging Principal Investigator, NIH National Institute of Biomedical Imaging and Bioengineering Cartilage Targeting Exosomes for Delivery of AntiCatabolic Drugs for Osteoarthritis Treatment Principal Investigator, NIH Trailblazer

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Faculty

Chiara Bellini Assistant Professor, Bioengineering; affiliated faculty, Mechanical and Industrial Engineering

PhD, University of Calgary, 2012 coe.northeastern.edu/people/bellinichiara Scholarship focus: diseases of the cardiovascular system; effects of cell-mediated growth and remodeling processes on tissue and organ mechanics; cardiovascular outcomes of chronic exposure to environmental toxins

SELECTED PUBLICATIONS Y.M. Farra, M.J. Eden, J. Coleman, P. Kulkarni, C. Ferris, J.M. Oakes, C. Bellini Neurological, Behavioral, and Physiological Effects of Acute Cannabis Nose-Only Exposure in C57BL/6 Mice, Inhalation Toxicology, 2020 A. Korneva, L. Zilberberg, D.B. Rifkin, J.D. Humphrey, C. Bellini Absence of LTBP-3 Attenuates the Aneurysmal Phenotype But Not Spinal Effects on the Aorta in Marfan Syndrome, Biomechanics and Modeling in Mechanobiology, 18(1), 2019,261-273 C. Bellini, N.J. Kristofik, M.R. Bersi, T.R. Kyriakides, J.D. Humphrey A Hidden Structural Vulnerability in the Thrombospondin-2 Deficient Aorta Increases the Propensity to Intramural Delamination, Journal of the Mechanical Behavior of Biomedial Materials, 71, 2017, 397-406 C. Bellini, M.R. Bersi, A. Caulk, J. Ferruzzi, D.M. Milewicz, F. Ramirez, D.B. Rifkin, G. Tellides, H. Yanagiswa, J.D. Humphrey Comparison of Ten Murine Models Reveals a Distinct Biomechanical Phenotype in Thoracuc Aortic Aneurysms, Journal of the Royal Society Interface, 14(130), 2017

SELECTED RESEARCH PROJECTS Evaluation of Aortic Stiffening as an Early Indicator of Anthracycline-Induced Cardiotoxicity Principal Investigator, National Institute of Health Health Consequences Following Acute and Chronic Firefighter Exposure to Wildland Fire Smoke Principal Investigator, Department of Homeland Security, Federal Emergency Management Agency Pulmonary and Cardiovascular Health Consequences Following Electronic Cigarette Exposure Principal Investigator, National Institute of Health

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Sidi A. Bencherif Assistant Professor, Chemical Engineering; affiliated faculty, Bioengineering

PhD, Carnegie Mellon University, 2009 coe.northeastern.edu/people/ bencherif-sidi Scholarship focus: polymer chemistry and engineering; biomaterials; biomedical engineering; drug delivery; tissue engineering; regenerative medicine; immunotherapy; immunoengineering; vaccines Honors and awards: National Science Foundation CAREER Award, Thomas Jefferson Award, BurroughsWellcome Fund Travel Award, DFCI/Northeastern University Joint Program Award, GapFund360 Award, MTTC Acorn Award, Acta Biomaterialia Outstanding Reviewer Award, AAI Early Career Faculty Travel Award, Carl Storm Underrepresented Minority Fellowship

SELECTED PUBLICATIONS L.J. Eggermont, T. Colombani, Z.J. Rogers, A. Memic, S.A. Bencherif Injectable Cryogels for Biomedical Applications, Trends in Biotechnology, 38, 2020, 418–431 P. Villard, M. Rezaeeyazdi, T. Colombani, K. Joshi Navare, D. Rana, A. Memic, S.A. Bencherif Autoclavable and Injectable Cryogels for Biomedical Applications, Advanced Healthcare Materials, 8, 2019, 1900679 A. Memic, T. Colombani, M. Rezaeeyazdi, L. Eggermont, J. Steingold, Z. Rogers, K.J. Navare, H.S. Mohammed, M. Sitkovsky, S.A. Bencherif Latest Advances in Cryogel Technology for Biomedical Applications, Advanced Therapeutics, 2019, 1800114 S.A. Bencherif, R.W. Sands, O. Ali, S.A. Lewin, A. Li, T. Braschler, T. Shih, D. Bhatta, G. Dranoff, D.J. Mooney Injectable Scaffold-Based Whole Tumor Cell Vaccines, Nature Communications, 6, 2015, 7556

SELECTED RESEARCH PROJECTS

Biomaterials for Wound Healing and Diabetic Ulcer Treatment Co-Investigator, King Abdulaziz University Hypoxia-Inducing Cryogels: A Hassle-Free and Low-Cost Hypoxic Cell Culture Solution Principal Investigator, Center for Research Innovation, Northeastern University Hypoxia-Inducing Cryogels As a Fast and Inexpensive Technology for Hypoxic Cell Culture Conditions Principal Investigator, Massachusetts Technology Transfer Center (MTTC) Modulating Local Tumor Hypoxia using Cryogel Scaffolds to Regulate Dendritic Cell Function and Activity Principal Investigator, National Science Foundation


Faculty

Penny Beuning Professor, Chemistry and Chemical Biology; affiliated faculty, Bioengineering

PhD, University of Minnesota, 2000 coe.northeastern.edu/people/beuningpenny Scholarship focus: chemical biology and biotechnology; DNA replication and repair; enzyme function Honors and awards: Chemical Research in Toxicology Young Investigator Award, American Chemical Society; National Science Foundation CAREER Award; Cottrell Scholar Award; American Cancer Society Research Scholar Award

SELECTED PUBLICATIONS L. Ngu, J.N. Winters, K. Nguyen, K.E. Ramos, N.A. DeLateur, L. Makowski, P.C. Whitford, M.J. Ondrechen, P.J. Beuning Probing Remote Residues Important for Catalysis in Escherichia Coli Ornithine Transcarbamoylase, PLoS One 15(2), 2020, e0228487 K.R. Moulton, A. Sadiki, B.N. Koleva, L.J. Ombelets, T.H. Tran, S. Liu, B. Wang, H. Chen, E. Micheloni, P.J. Beuning, G.A. O’Doherty, Z.S. Zhou Site-Specific Reversible Protein Modification: Transglutaminase-Catalyzed Glutamine Conjugation and Bioorthogonal Light-Mediated Removal, Bioconjugate Chemistry, 30, 2019, 1617-1621 N.M. Antczak, A.R. Walker, H.R. Stern, E.M. Leddin, T.A. Coulther, C. Palad, R.J. Swett, G.A. Cisneros, P.J. Beuning Characterization of Nine Cancer-Associated Variants in Human DNA Polymerase K, Chemical Research in Toxicology, 31, 2018, 697-711 C.L. Mills, R. Garg, J.S. Lee, L. Tian, A. Suciu, G. Cooperman, P.J. Beuning, M.J. Ondrechen Functional Classification of Protein Structures by Local Structure Matching in Graph Representation, Protein Science, 27, 2018, 1125-1135 R. Parasuram, T.A. Coulther, J.M. Hollander, E. Keston Smith, M.J. Ondrechen, P.J. Beuning Prediction of Active Site and Distal Residues in E. coli DNA Polymerase III Alpha Polymerase Activity, Biochemistry, 57(7), 2018, 1063–1072

SELECTED RESEARCH PROJECTS D3SC: Mining For Mechanistic Information to Predict Protein Function Co-Principal Investigator, National Science Foundation Dynamics of Processivity Clamp Proteins in Bacterial DNA Replication Principal Investigator, National Institutes of Health

Ahmed Busnaina William Lincoln Smith and University Distinguished Professor, Mechanical and Industrial Engineering; affiliated faculty, Bioengineering; affiliated faculty, Electrical and Computer Engineering

PhD, Oklahoma State University, 1983 coe.northeastern.edu/people/ busnaina-ahmed Scholarship focus: nanomanufacturing; nano and microscale printing of sensors and electronics; nano and micro scale defects in semiconductor manufacturing; high rate nanomanufacturing; power electronics, RF, NEMS devices and nanomaterials based nanoelectronics, flexible and hybrid electronics Honors and awards: 2020 ASME William T. Ennor Manufacturing Technology Award and Medal, Fellow, National Academy of Inventors; Fulbright Senior Scholar; Life Fellow, American Society of Mechanical Engineers; Fellow, the Adhesion Society; Outstanding Translational Research Award, Institute of Environmental Sciences and Technology’s 2013 Willis J. Whitfield Award

SELECTED PUBLICATIONS S.A. Abbasi, T.H. Kim, S. Somu, H. Wang, Z. Chai, M. Upmanyu, A.A. Busnaina Fabrication of a Nanoelectromechanical Bistable Switch Using Directed Assembly of SWCNTs, Journal of Physics D: Applied Physics, 53(23), 2020 Z. Chai, A. Korkmaz, C. Yilmaz, A.A. Busnaina High-Rate Printing of Micro/Nanoscale Patterns Using Interfacial Convective Assembly, Advanced Materials, 2020, 2000747 Z. Chai, H. Jeong, S.A. Abbasi, A.A. Busnaina Fabrication of Organic Field Effect Transistors using Directed Assembled and Transfer Printed Carbon Nanotube Source/Drain Electrodes, Applied Physics Letters, 114(10), 2019, 103301 Z. Chai, J. Seo, S.A. Abbasi, A. Busnaina Assembly of Highly Aligned Carbon Nanotubes Using an Electro-Fluidic Assembly Process, ACS Nano, 12(12), 2018, 12315-12323

SELECTED RESEARCH PROJECTS Advanced Manufacturing Cluster for Smart Sensors and Materials Principal Investigator, Massachusetts Technology Collaborative Novel Nanoprinting for Wireless Chemical Gas sensors Principal Investigator, NASA

12


Faculty

Rebecca L. Carrier Professor, Chemical Engineering; affiliated faculty, Bioengineering

PhD, Massachusetts Institute of Technology, 2000 coe.northeastern.edu/people/carrierrebecca

Paul M. Champion

Professor, Physics; affiliated faculty, Bioengineering

PhD, University of Illinois at Urbana Champaign coe.northeastern.edu/people/ champion-paul

Scholarship focus: intestinal tissue engineering, retinal regenerative medicine, oral drug delivery

Scholarship focus: experimental biological physics; inelastic light scattering; ultrafast pump-probe laser spectroscopy; proton tunneling

Honors and awards: Fellow, American Institute for Medical and Biological Engineering; College of Engineering Soren Buus Outstanding Research Award; Society for Biomaterials Member-At-Large (2018-2019); College of Engineering Faculty Fellow; National Science Foundation CAREER Award

Honors and awards: National Institutes of Health Career Development Award; Fellow of the American Physical Society; Fellow, American Association for Advancement of Science; International Advisory Board: Japan Ministry of Education, Culture, Sports, Science and Technology; Board of Directors Telluride Science Research Center (2006-2008); Advisory Board NSF Frontier Center: University of Michigan; National Research Service Award; Fellow, Japanese Society for the Promotion of Science; NSF/CNRS Exchange Fellow; Divisional Editor Physical Review Letters (1994-2000)

SELECTED PUBLICATIONS J. Kundu, A. Michaelson, P. Baranov, M. Chiumiento, T. Nigl, M.J. Young, R.L. Carrier Interphotoreceptor Matrix Based Biomaterial: Impact on Human Retinal Progenitor Cell Attachment and Differentiation, Journal of Biomedical Materials Research B Applied Biomaterials, 106(2), 2018, 891-899 J.Y. Lock, T.L. Carlson, C.M. Wang, A. Chen, R.L. Carrier Acute Exposure to Commonly Ingested Emulsifiers Alters Intestinal Mucus Structure and Transport Properties, Scientific Reports, 8(1), 2018, 10008 T.L. Carlson, J.Y. Lock, R.L. Carrier Engineering the Mucus Barrier, Annual Reviews in Biomedical Engineering, 20, 2018, 197-220 R.L. Carrier, M. Cirit, L.G. Griffith, D.A. Lauffenburger, et al. Integrated Gut/Liver Microphysiological Systems Elucidates Inflammatory Inter-Tissue Crosstalk, Biotechnology and Bioengineering, 114(11), 2017, 2648-2659 A.N. Koppes, M. Kamath, C.A. Pfluger, D.D. Burkey, M. Dokmeci, L. Wang, R.L. Carrier Complex, Multi-Scale Small Intestinal Topography Replicated in Cellular Growth Substrates Fabricated via Chemical Vapor Deposition of Parylene C, Biofabrication, 8(3), 2016, 035011O

SELECTED RESEARCH PROJECTS Impact of Lipids and Food on Oral Compound Absorption: Mechanistic Studies and Modeling Principal Investigator, National Institutes of Health GuMI: New In Vitro Platforms to Parse the Human Gut Epithelial-Microbiome-Immune Axis Principal Investigator, National Institutes of Health

13

SELECTED PUBLICATIONS P.M. Champion, A. Bennabbas Proton Tunneling and Proton-coupled Electron Transfer in Biological Systems: Theory and Experimental Analysis, Theoretical and Computational Chemistry Series, 18, Chap. 3, 2021, Royal Society of Chemistry, J. Kaestner and S. Kozuch, Eds. Z. Hennighausen, C. Lane, A. Benabbas, K. Mendez, M. Eggenberger, P.M. Champion, J. Robinson, A. Bansil, S. Kar Oxygen-Induced In Situ Manipulation of the Interlayer Coupling and Exciton Recombination in Bi2Se3/MoS2 2D Heterostructures, ACS Appl. Mater. Interfaces, 11, 2019, 15913−15921 A. Benabbas, P.M. Champion Adiabatic Ligand Binding in Heme Proteins: Ultrafast Kinetics of Methionine Rebinding in Ferrous Cytochrome C, Journal of Physical Chemistry B, 122, 2018, 11431-11439 B. Salna, A. Benabbas, D. Russo, P.M. Champion Tunneling Kinetics and Nonadiabatic Proton-Coupled Electron Transfer in Proteins: The Effect of Electric Fields and Anharmonic Donor-Acceptor Interactions, Journal of Physical Chemistry B, 121, 2017, 6869-6881

SELECTED RESEARCH PROJECTS

Electron-Nuclear Coupling, Charge Transport, and Catalysis in Biomolecules: The Role of Vibrational and Conformational Dynamics Principal Investigator, National Science Foundation


Faculty

Samuel Chung Assistant Professor, Bioengineering

PhD, Harvard University, 2009 coe.northeastern.edu/people/chungsamuel Scholarship focus: brain cell regeneration, automated microscopy and laser surgery, user-friendly and lowcost fluorescence microscopy

SELECTED PUBLICATIONS M.B. Harreguy, V. Marfil, N.W. F. Grooms, C.V. Gabel, S.H. Chung, G. Haspel Ytterbium-Doped Fibre Femtosecond Laser Offers Robust Operation with Deep and Precise Microsurgery of C. elegans Neurons, Scientific Reports, 10, 2020 4545 H. Cai, Y.L. Wang, R.T. Wainner, N.V. Iftimia, C.V. Gabel, S.H. Chung Wedge Prism Approach for Simultaneous Multichannel Microscopy, Scientific Reports, 9, 2019, 17795 S.H. Chung, M.R. Awal, J. Shay, M.M. McLoed, E. Mazur, C.V. Gabel Novel DLK-Independent Neuronal Regeneration in Caenorhabditis Elegans Shares Links with ActivityDependent Ectopic Outgrowth, Proceedings of the National Academy of Sciences, 113, 2016, E2852-E2860

SELECTED RESEARCH PROJECTS High-Throughput Microscopy Platform for Accelerating Regeneration Neuroscience Principal Investigator, Northeastern TIER 1 Transcriptomic, Genetic, and Optogenetic Analysis of a Novel High-Throughput Model for Lesion-Conditioned Regeneration Principal Investigator, Morton Cure Paralysis

Heather Clark Professor, Bioengineering; joint appointment in College of Science; affiliated faculty, Chemical Engineering; Director, Institute for Chemical Analysis of Living Systems (CILS)

PhD, University of Michigan, 1999 coe.northeastern.edu/people/clarkheather Scholarship focus: optical nanosensors for biological analysis

SELECTED PUBLICATIONS H. Seo, H.A. Clark Gadolinium-Based MRI Contrast Agent for the Detection of Tyrosinase, Analyst, 145, 2020, 1169-1173 W. Di, H.A. Clark Optical Nanosensors for in Vivo Physiological Chloride Monitoring for Cystic Fibrosis, Analytical Methods, 12 (11), 2020, 1441-1448 W. Di, X. Tan, I.A.C. Calderon, A.E. Neal Reilly, M. Niedre, H.A. Clark Real-Time Particle-by-Particle Detection of Erythrocyte Camouflaged Microsensor with Extended Circulation Time in the Bloodstream, Proceedings of the National Academy of Sciences of the United States of America, 117(7), 2020, 3509-3517 J. Morales, R.H. Pawle, N. Akkilic, Y. Luo, M. Xavierselvan, R. Albokhari DNA-Based Photoacoustic Nanosensor for Interferon Gamma Detection, ACS Sensors, 4(5), 2019, 1313-1322 C. Anderson, M. Johansen, B. Erokwu, H. Hu, Y. Gu, Y. Zhang, H.A. Clark, et al. Simultaneous Concentration Mapping of Multiple MRI Contrast Agents with Dual Contrast - Magnetic Resonance Fingerprinting, Nature Scientific Reports, 9(1), 2019, 1-11

SELECTED RESEARCH PROJECTS AChMRNS: Nanosensors for Chemical Imaging of Acetylcholine Using MRI Principal Investigator, National Institutes of Health Circulating Red Blood Cell Based Nanosensors for Continuous, Real-Time Drug Monitoring Principal Investigator, National Institutes of Health Optical Nanosensors Detect Neurotransmitter Release in the Peripheral Nervous System Principal Investigator, National Institutes of Health

14


Faculty

Erin J. Cram Professor, Biology; affiliated faculty, Bioengineering

PhD, University of California, Berkeley, 2000 coe.northeastern.edu/people/cram-erin Scholarship focus: cell migration and mechanotransduction in C. elegans; improving production of drug compounds by medicinal plants

SELECTED PUBLICATIONS C.A. Kelley, S. De Henau, L. Bell, T.B. Dansen, E.J. Cram Redox signaling modulates Rho activity and tissue contractility in the C. elegans spermatheca, Molecular Biology of the Cell, 2020, May 6 S. Mortensen, D. Bernal-Franco, L.F. Cole, S. Sathitloetsakun, E.J. Cram, C.W.T. Lee-Parsons EASI Transformation: An Efficient Transient Expression Method for Analyzing Gene Function in Catharanthus Roseus Seedlings, Frontiers in Plant Science, 10, 2019, 755 J. Bouffard, A.D. Cecchetelli, C. Clifford, K. Sethi, R. Zaidel-Bar, E.J. Cram The RhoGAP SPV-1 Regulates Calcium Signaling to Control the Contractility of the Caenorhabditis Elegans Spermatheca during Embryo Transits, Molecular Biology of the Cell, 30(7), 2019, 907-922 A.C.E Wirshing, E.J. Cram Spectrin Regulates Cell Contractility through Production and Maintenance of Actin Bundles in the Caenorhabditis Elegans Spermatheca, Molecular Biology of the Cell, 29(20), 2018, 2433-2449 C.A. Kelley, A.C.E. Wirshing, R. Zaidel-Bar, E.J. Cram The Myosin Light-Chain Kinase MLCK-1 Relocalizes during Caenorhabditis Elegans Ovulation to Promote Actomyosin Bundle Assembly and Drive Contraction, Molecular Biology of the Cell, 29(16), 2018, 1975-1991 A.C. Wirshing, E.J. Cram Myosin Activity Drives Actomyosin Bundle Formation and Organization in Contractile Cells of the C. Elegans Spermatheca, Molecular Biology of the Cell, 28(14), 2017, 1815-1818

SELECTED RESEARCH PROJECTS Elucidating the Role of ERM Proteins in Cytoskeletal Orientation in a Contractile Tissue Principal Investigator, National Science Foundation In Vivo Analysis of Mechanotransduction Principal Investigator, National Institutes of Health Zinc Finger Transcription Factors: Regulators of Growth, Development, and Alkaloid Biosynthesis Co-Principal Investigator, National Science Foundation

15

Guohao Dai Associate Professor, Bioengineering

PhD, Harvard—MIT Health Science and Technology, 2001 coe.northeastern.edu/people/daiguohao Scholarship focus: 3-D bioprinting technology, stem cells technology and vascular bioengineering Honors and awards: Fellow, American Heart Association; National Science Foundation Faculty Early CAREER Award; Rising Star Award, Biomedical Engineering Society Cellular and Molecular Bioengineering; American Heart Association National Scientist Development Award

SELECTED PUBLICATIONS M.S. Ozturk, V.K. Lee, H. Zou, R.H. Friedel, X.Intes, G.Dai High Resolution Tomographic Analysis of in vitro 3D Glioblastoma Tumor Model under Long-Term Drug Treatment, Science Advances, 6(10), 2020, 7513 W. Song, A. Chiu, L.-H. Wang, R.E. Schwartz, B. Li, N. Bouklas, D.T. Bowers, V.K. Lee, G. Dai, M. Ma, et al. Engineering Transferrable Microvascular Meshes for Subcutaneous Islet Transplantation, Nature Communications, 10, 2019, 4602 L. Niklason, G. Dai Arterial Venous Differentiation for Vascular Bioengineering, Annual Review of Biomedical Engineering, 2018, 4(20), 431-447 C. Xu, W. Lee, G. Dai, Y. Hong Highly Elastic Biodegradable Single-Network Hydrogel for Cell Printing, ACS Applied Materials & Interfaces, 10(12), 2018, 9969-9979 T.B. Dorsey, D. Kim, A. Grath, D. James, G. Dai Multivalent Biomaterial Platform to Control the Distinct Arterial Venous Differentiation of Pluripotent Stem Cells, Biomaterials, 2018, 185, 1-12

SELECTED RESEARCH PROJECTS CAREER: Engineer a Functional 3-D Vascular Niche to Support Neural Stem Cell Self-Renewal Principal Investigator, National Science Foundation Differentiation Arterial and Venous Endothelial Cells from Embryonic Stem Cells Principal Investigator, National Institutes of Health Elastic Printable Biomaterials for 3-D Bioprinting of Vascular Conduit Principal Investigator, National Institutes of Health Transcriptional Regulation of Arterial Venous Differentiation Principal Investigator, American Heart Association


Faculty

Jack Dennerlein Professor, Physical Therapy, Movement, and Rehabilitation Sciences; affiliated faculty, Bioengineering

PhD, University of California, Berkeley, 1996 coe.northeastern.edu/people/ dennerlein-jack Scholarship focus: musculoskeletal disorders; work place injury prevention and health; occupational biomechanics; biomechanics of human movement

SELECTED PUBLICATIONS J.T.Dennerlein, L. Burke, E.L.Sabbath, J.A.R Williams, S.E. Peters, L. Wallace, M. Karapanos, G. Sorensen An Integrative Total Worker Health Framework for Keeping Workers Safe and Healthy During the COVID-19 Pandemic, Hum Factors, 62(5), 2020, 689-696 S.E. Peters, H.D. Trieu, J. Manjourides, J.N. Katz, J.T. Dennerlein Designing a Participatory Total Worker Health® Organizational Intervention for Commercial Construction Subcontractors to Improve Worker Safety, Health, and Well-Being: The “ARM for Subs” Trial, International Journal of Environmental Research and Public Health , 17(14), 2020, E5093 G.S.Faber, I. Kingma, C.C. Chang, J.T. Dennerlein, J.H. van Dieën Validation Of A Wearable System For 3D Ambulatory L5/S1 Moment Assessment During Manual Lifting Using Instrumented Shoes And An Inertial Sensor Suit, J. Biomechanics, 102, 2020, 109671 J.H. Kim, L.S. Marin, J.T. Dennerlein Evaluation of Commercially Available Seat Suspensions to Reduce Whole Body Vibration Exposures in Mining Heavy Equipment Vehicle Operators, Applied Ergonomics, 71, 2018, 78-86 D.S. Asakawa, J.T. Dennerlein, D.L. Jundrich Index Finger and Thumb Kinematics and Performance Measurements for Common Touchscreen Gestures, Applied Ergonomics, 58, 2017, 176-181

SELECTED RESEARCH PROJECTS Cervical Biomechanics associated with Headmounted Displays Principal Investigator Office Ergonomics Research Committee Development and evaluation of a Total Worker Health® Intervention for Construction Subcontractors Principal Investigator, National Institute for Occupational Safety and Health

Charles Dimarzio Associate Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering, Mechanical and Industrial Engineering

PhD, Northeastern University, 1996 coe.northeastern.edu/people/dimarziocharles Scholarship focus: Optics, microscopy, coherent detection, interaction of light and sound waves hyperspectral imaging, diffusive optical tomography and ultrasound, lidar and remote sensing, multi-model imaging, Activities include: computer modeling, designing, building and testing of hardware, and processing the resulting data

SELECTED PUBLICATIONS A.E. Draghici, D. Potart, J.L. Hollmann, V. Pera, Q. Fang, C.A. DiMarzio, J.A. Taylor, M.J. Niedre, S.J. Shefelbine Near Infrared Spectroscopy for Measuring Changes in Bone Hemoglobin Content after Exercise in Individuals with Spinal Cord Injury, Journal of Orthopaedic Research, 2017 Z.R. Hoffman, C.A. DiMarzio Single-Image Structured Illumination Using Hilbert Transform Demodulation, Journal of Biomedical Optics, 22(5), 2017, 056011–056011 Z. R. Hoffman, C.A. DiMarzio Super-Resolution Structured Illumination in Optically Thick Specimens Without Fluorescent Tagging, Journal of Biomedical Optics, 22(11), 2017, 1–11 A. Vakili, J.L. Hollmann, R.G. Holt, C.A. DiMarzio Enhanced Tagging of Light Utilizing Acoustic Radiation Force with Speckle Pattern Analysis, Journal of Biomedical optics, 22(10), 2017, 106004 J.L. Hollmann, R. Horstmeyer, C. Yang, C.A DiMarzio Diffusion Model for Ultrasound-Modulated Light, Journal of Biomedical Optics, 19(3), 2014, 035005 J.L. Hollmann, R. Horstmeyer, C. Yang, C.A. DiMarzio Analysis and Modeling of an Ultrasound-Modulated Guide Star to Increase the Depth of Focusing in a Turbid Medium, Journal of Biomedical Optics, 18(2), 2013, 025004

SELECTED RESEARCH PROJECTS Coded-Illumination Fourier Ptychography for High-Content MultiModal Imaging Principal Investigator, National Science Foundation Collagen Monomer Imaging Co-Principal Investigator, National Institutes of Health Light Scattering Research Principal Investigator, Draper Labs

16


Faculty

Eno Ebong Associate Professor and Associate Chair for Graduate Studies, Chemical Engineering; Associate Professor, Bioengineering; affiliated faculty, Biology

Professor and Vice Chair of Research, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, Rensselaer Polytechnic Institute, 2006 coe.northeastern.edu/people/ebongeno

PhD, University of Florida, 2002 coe.northeastern.edu/people/ erdogmus-deniz

Scholarship focus: studying the means by which endothelial cell mechanotransduction occurs in order to prevent or promote diseases related to blood vessel dysfunction Honors and awards: National Science Foundation CAREER Award; National Institutes of Health Career Development Award; Gordon Research Conference Board of Trustees Carl Storm Fellowship

SELECTED PUBLICATIONS S.A. Mensah, A.A. Nersesyan, I.C. Harding, C.I. Lee, X. Tan, S. Banerjee, M. Niedre, V.P. Torchilin, E.E. Ebong Flow-Regulated Endothelial Glycocalyx Determines Metastatic Cancer Cell Activity, The FASEB Journal, 34(5), 2020, 6166-6184 X. Cai, J. Qiao, P. Kulkarni, I.C. Harding, E. Ebong, C.F. Ferris Imaging the Effect of the Circadian Light-Dark Cycle on the Glymphatic System in Awake Rats, Proceedings of the National Academy of Sciences of the United States of America, 117(1), 2020, 668-676 M.J. Cheng, R. Mitra, C.C. Okorafor, A.A. Nersesyan, I.C. Harding, N.N. Bal, R. Kumar, H. Jo, S. Sridhar, E.E. Ebong Targeted Intravenous Nanoparticle Delivery: Role of Flow and Endothelial Glycocalyx Integrity, Annals of Biomedical Engineering, 2020 J. Nagatomi, E.E. Ebong (co-editors) 2nd Edition Mechanobiology Handbook, CRC, Taylor and Francis Group, Boca Raton, 2019 I.C. Harding, R. Mitra, S.A. Mensah, A. Nersesyan, N.N. Bal, E.E. Ebong Endothelial Barrier Reinforcement Relies on FlowRegulated Glycocalyx, a Potential Therapeutic Target, Biorheology, 2019, 1-19

SELECTED RESEARCH PROJECTS Atheroprotective vs Atherogenic Glycocalyx Mechanotransduction Mechanisms Principal Investigator, National Institutes of Health EMBRACE STEM (Endothelial MechanoBiology Research and multiCultural Education in STEM) Principal Investigator, National Science Foundation

17

Deniz Erdogmus

Scholarship focus: machine learning, signal and image analytics, cyber-human systems Honors and awards: Excellence in Mentoring Award; National Science Foundation CAREER Award; Søren Buus Outstanding Research Award, College of Engineering; College of Engineering Faculty Fellow

SELECTED PUBLICATIONS V. Yildiz, P. Tian, I. Yildiz, J.M. Brown, J. Kalpathy-Cramer, J. Dy, S. Ioannidis, D. Erdogmus, S. Ostmo, S.J. Kim, R.V.P. Chan, J.P. Campbell, M.F. Chiang Plus Disease in Retinopathy of Prematurity: Convolutional Neural Network Performance Using a Combined Neural Network and Feature Extraction Approach, Translational Vision Science and Technology, 9(2), 2020, 10 I. Yildiz, P. Tian, J. Dy, D. Erdogmus, J. Brown, J. KalpathyCramer, S. Ostmo, J.P. Campbell, M.F. Chiang, S. Ioannidis Classification and Comparison Via Neural Networks, Neural Networks, 118, 2019, 65-80 M. Han, S.Y. Gunay, G. Schirner, T. Padir, D. Erdogmus, HANDS: A Multimodal Dataset for Modeling Toward Human Grasp Intent Inference in Prosthetic Hands, Intelligent Service Robotics, 13, 2019, 179–185 M.S. Goodwin, C.A. Mazefsky, S. Ioannidis, D. Erdogmus, M. Siegel Predicting Aggression to Others in Youth with Autism Using Wearable Biosensor, Autism Research, 12(8), 1286-1296, 2019

SELECTED RESEARCH PROJECTS Coordination of Dyadic Object Handover for HumanRobot Interaction Co-Principal Investigator, National Science Foundation Mining for Mechanistic Information to Predict Protein Function Co-Principal Investigator, National Science Foundation Multimodal Signal Analysis and Data Fusion for Posttraumatic Epilepsy Prediction Co-Principal Investigator, National Institutes of Health Probabilistic Learning with Less Labeling Co-Principal Investigator, Defense Advanced Research Projects Agency Signal Processing in Neural Networks for Wireless IoT Principal Investigator, Defense Advanced Research Projects Agency


Faculty

Hui Fang Assistant Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, University of California, Berkeley, 2014 coe.northeastern.edu/people/fang-hui Scholarship focus: neural interfaces, biomimetic electronics, electronic materials & organisms Honors and awards: National Science Foundation CAREER Award

SELECTED PUBLICATIONS

Qianqian Fang Associate Professor, Bioengineering; affiliated faculty, Electrical and Computer Engineering

PhD, Dartmouth College, 2005 coe.northeastern.edu/people/fangqianqian Scholarship focus: innovations in translational medical imaging devices to better diagnose cancers and understand the human brain, low-cost point-of-care diagnostic tools to delivery life-saving medicines to the resource-poor regions, and high performance computing tools to facilitate the development of the next-generation imaging methods

X. Han, K. J. Seo, Y. Qiang, Z. Li, S. Vinnikova, Y. Zhong, X. Zhao, P. Hao, S. Wang, H. Fang Nanomeshed Si Nanomembranes, npj Flexible Electronics, 3(9), 2019 Y. Qiang, P. Artoni, K. J. Seo, S. Culaclii, V. Hogan, X. Zhao, Y. Zhong, X. Han, P.-M. Wang, Y.-K. Lo, Y. Li, H. A. Patel, Y. Huang, A. Sambangi, J.S.V. Chu, W. Liu, M. Fagiolini, H. Fang Transparent Arrays of Bilayer-Nanomesh Microelectrodes for Simultaneous Electrophysiology and 2-Photon Imaging in the Brain, Science Advances, 4(9), 2018, eaat0626 H. Fang, K.J. Yu, C. Gloschat, Z. Yang, E. Song, C.-H. Chiang, J. Zhao, S.M. Won, S. Xu, M. Trumpis, Y. Zhong, S.W. Han, Y. Xue, D. Xu, S.W. Choi, G. Cauwenberghs, M. Kay, Y. Huang, J. Viventi, I.R. Efimov, J.A. Rogers Capacitively Coupled Arrays of Multiplexed Flexible Silicon Transistors for Long-Term Cardiac Electrophysiology, Nature Biomedical Engineering, 1, 2017, 0038 H. Fang, C. Battaglia, C. Carraro, S. Nemsak, B. Ozdol, J.S. Kang, H.A. Bechtel, S.B. Desai, et. al Strong Interlayer Coupling In Van Der Waals Heterostructures Built From Single-Layer Chalcogenides, Proceedings of the National Academy of Sciences, 111, 2014, 6198-6202

Honors and awards: Leading Innovation in Reimagining Global Health, Innovation Countdown 2030 Initiative

SELECTED RESEARCH PROJECTS

A Versatile High-Performance Optical Mammography Co-Imager Principal Investigator, National Institutes of Health GPU-Accelerated Monte Carlo Photon Transport Simulation Platform Principal Investigator, National Institutes of Health Next-Generation Optical Brain Functional Imaging Platform Principal Investigator, National Institutes of Health

Massively Multiplexed Gold Microprobe Arrays for WholeMouse-Brain Recording Principal Investigator, National Institutes of Health Transforming Neural Interfaces Using Stretchable, Transparent, Multifunctional Nanomesh Microelectrodes Principal Investigator, National Science Foundation Transfer Printed, Single-Crystalline Si Nanomesh Thin Films Principal Investigator, National Science Foundation

SELECTED PUBLICATIONS A. Phong Tran, S. Yan, Q. Fang Improving Model-Based fNIRS Analysis Using MeshBased Anatomical and Light-Transport Models, Neurophotonics, 7(1), 2020, 015008 Y. Yuan, P. Cassano, M. Pias, Q. Fang Transcranial Photobiomodulation with Near-Infrared Light from Childhood to Elderliness: Simulation of Dosimetry, Neurophotonics, 7(1), 2020, 015009 S. Yan, A.P. Tran, Q. Fang A Dual-Grid Mesh-Based Monte Carlo Algorithm for Efficient Photon Transport Simulations in Complex 3-D Media, Journal of Biomedical Optics, 24(2), 2019, 020503 Q. Fang, S. Yan Graphics Processing Unit-Accelerated Mesh-Based Monte Carlo Photon Transport Simulations, Journal of Biomed. Optics, 24(11), 2019, 115002 P. Cassano, A.P. Tran, H. Katnani, B.S. Bleier, M.R. Hamblin, Y. Yuan, Q. Fang Selective Photobiomodulation for Emotion Regulation: Model-Based Dosimetry Study, Neurophotonics, 6(1), 2019, 015004

SELECTED RESEARCH PROJECTS

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Faculty

Craig Ferris Professor, Psychology; affiliated faculty, Bioengineering

PhD, New York Medical College, 1979 coe.northeastern.edu/people/ferriscraig Scholarship focus: magnetic resonance imaging and neurodegenerative disease

SELECTED PUBLICATIONS J. Qiao, C.M. Lawson, K.F.G. Rentrup, P. Kulkarni, C.F. Ferris Evaluating Blood-Brain Barrier Permeability in a Rat Model of Type 2 Diabetes, Journal of Translational Medicine, 18, 2020, 256 T.E. Ziegler, P. Kulkarni, H. Ash, X. Cai, M. Elizabeth Mayerand, B. Rauch, C.F. Ferris Novel Imaging Technology and Procedures for Studying Brain Function in Preadolescent Awake Marmosets, J Neurosci Methods, 343, 2020, 108823 X. Cai, J. Qiao, P. Kulkarni, I.C. Harding, E. Ebong, C.F. Ferris Imaging the Effect of the Circadian Light-Dark Cycle on the Glymphatic System in Awake Rats, Proceedings of the National Academy of Sciences of the USA, 117(1), 2020, 668-676 C.F. Ferris, X. Cai, J. Qiao, B. Switzer, J. Baun, T. Morrison, S. Iriah, D. Madularu, K.W. Sinkevicius, P. Kulkarni Life Without a Brain: Neuroradiological and Behavioral Evidence of Neuroplasticity Necessary to Sustain Brain Function in the Face of Severe Hydrocephalus, Scientific Reports, 9, 2019, 16479 P. Kulkarni, T.R. Morrison, X. Cai, S. Iriah, N. Simon, J. Sabrick, L. Neuroth, C.F. Ferris Neuroradiological Changes Following Single or Repetitive Mild, Frontiers in Systems Neuroscience, 13, 2019, 34

Edgar Goluch Associate Professor, Chemical Engineering; affiliated faculty, Bioengineering, Biology, Civil and Environmental Engineering

PhD, University of Illinois, 2007 coe.northeastern.edu/people/goluchedgar Scholarship focus: detection of biomolecules at the nanoscale in micro and nanofluidic channels; biophysics; micro and systems biology; environmental sensing; analytical instrumentation

SELECTED PUBLICATIONS M.K. Kimani, J. Mwagi, E.D. Goluch Bacterial Sample Concentration and Culture Monitoring Using a PEG-Based Osmotic System with Inline Impedance and Voltammetry Measurements, Journal of Analysis and Testing, 3(2), 2019, 166-174 M.K. Kimani, R. Loo, E.D. Goluch Biosample Concentration Using Microscale Forward Osmosis with Electrochemical Monitoring, Analytical Chemistry, 91, 2019, 7487-7494 P.J. Buch, Y. Chai, E.D. Goluch Treating Polymicrobial Infections in Chronic Diabetic Wounds, Clinical Microbiology Reviews, 32(2), 2019, e00091-18 J. Sun, N. Tandogan, A.Z. Gu, S. MĂźftĂź, E.D. Goluch, K.T. Wan Quantification of Colloidal Filtration of Polystyrene MicroParticles on Glass Substrate Using a Microfluidic Device, Colloids and Surfaces B: Biointerfaces 165, 2018, 381-387 C.R. Santiveri, H.J. Sismaet, M. Kimani, E.D. Goluch Electrochemical Detection of Pseudomonas Aeruginosa in Polymicrobial Environments, ChemistrySelect, 3(11), 2018 2926-2930 H.J. Sismaet, E.D. Goluch Electrochemical Probes of Microbial Community Behavior, Annual Review of Analytical Chemistry, 2018 P.N. Abadian, P.J. Buch, E.D. Goluch, J. Li, Z. Zhang Real-Time Monitoring of Urinary Encrustation Using a Quartz Crystal Microbalance, Analytical Chemistry, 90(3), 2018, 1531-1535

SELECTED RESEARCH PROJECTS Point-of-Care Test for Identifying Gram Negative Urinary Tract Infections in Companion Animals Principal Investigator, National Science Foundation

19


Faculty

C.J. Hasson Associate Professor, Physical Therapy; affiliated faculty, Bioengineering

PhD, UMass Amherst, 2009 coe.northeastern.edu/people/hassonchristopher Scholarship focus: to understand how the complex interactions between the nervous system, musculoskeletal system and the environment affect movement, control, and learning in humans

SELECTED PUBLICATIONS C.J. Hasson, S.E. Goodman Learning to Shape Virtual Patient Locomotor Patterns: Internal Representations Adapt to Exploit Interactive Dynamics, Journal of Neurophysiology, 121(1), 2019, 321-335 C.J. Hasson An Interactive Simulator for Imposing Virtual Musculoskeletal Dynamics, IEEE Transactions on Biomedical Engineering, 65(3), 2018, 539-549 S.E. Goodman, C.J. Hasson Elucidating Sensorimotor Control Principles with Myoelectric Musculoskeltal Models, Frontiers in Human Neuroscience, 11, 2017, 531 C.J. Hasson, O. Gelina, G. Woo Neural Control Adaptation to Motor Noise Manipulation, Frontiers in Human Neuroscience, 10, 2016, 59 C.J. Hasson, J. Manczurowsky Effects of Kinematic Vibraotactile Feedback on Learning to Control a Virtual Prosthetic Arm, Journal of NeuroEngineering and Rehabilitation, 12(1), 2016, 31

David Kaeli COE Distinguished Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering, Khoury College of Computer Sciences

PhD, Rutgers University, 1992 coe.northeastern.edu/people/kaelidavid Scholarship focus: computer architecture, GPUs, heterogeneous computing, performance analysis, security and information assurance, hardware reliability and recovery, big data analytics, workload characterization Honors and awards: Fellow, Institute of Electrical and Electronics Engineers; Distinguished Scientist, Associate of Computing Machinery; Distinguish Professor, Heterogeneous Systems Architecture Foundation; National Science Foundation CAREER Award

SELECTED PUBLICATIONS F. Previlon, C. Kalra, D. Tiwari, D. Kaeli Characterizing and Exploiting Soft Error Vulnerability Phase Behavior in GPU Applications, IEEE Transactions on Dependable and Secure Computing, 2020 T. Baruah, Y. Sun, A. Dincer, S. Mojumder, J. Abellan, Y. U., A. Josh, N. Rubin, J. Kim, D. Kaeli Griffin: Hardware-Software Support for Efficient Page Migration in Multi-GPU Systems, Proceedings of the 26th IEEE International Symposium on High Performance Computer Architecture, 2020, 596-609 Y. Sun, T. Baruah, S.A. Mojumder, S. Dong, X. Gong, S. Treadway, Y. Bao, D. Kaeli, et al. MGPUSim: Enabling Multi-GPU Performance Modeling and Optimization, Proceedings of the 46th International Symposium on Computer Architecture (ISCA ‘19), ACM, New York, NY, USA, 2019, 197-209

SELECTED RESEARCH PROJECTS A Framework of Simultaneous Acceleration and Storage Reduction on Deep Neural Networks Using Structured Matrices Co-Principal Investigator, National Science Foundation DARPA HIVE Principal Investigator, Defense Advanced Research Agency Exploring Analysis of Environment and Health Through Multiple Alternative Clustering Co-Principal Investigator, National Science Foundation Porting and Accelerating High Performance Computing Applications to the AMD ROCm Runtime Environment Principal Investigator, AMD

20


Faculty

Alain Karma Professor, Physics; affiliated faculty, Bioengineering

Affiliated faculty, Bioengineering; assistant professor, Pharmaceutical Sciences

PhD, University of California at Santa Barbara, 1985 coe.northeastern.edu/people/karmaalain

PhD, Ben Gurion University of Negev, 2007 coe.northeastern.edu/people/konrytali

Scholarship focus: computational modeling of cardiac arrhythmia mechanisms from cellular to organ scales including systems biology approaches Honors and awards: Fellow of the American Physical Society, Northeastern University Robert D. Klein Lecturer, College of Arts and Sciences Distinguished Professor, Northeastern University

SELECTED PUBLICATIONS Z. Song, A. Karma, J.N. Weiss, Z. Qu Long-Lasting Sparks: Multi-Metastability and Release Competition in the Calcium Release Unit Network, Speech Communication, 12(1), 2016, e1004671 D. Terentyev, C.M. Rees, W. Li, L.L. Cooper, H.K. Jindal, X. Peng, Y. Lu, R. Terentyeva, K.E. Odening, J. Daley, K. Bist, B.-R. Choi, A. Karma, G. Koren Hyperphosphorylation of RyRs Underlies Triggered Activity in Transgenic Rabbit Model of LQT2 Syndrome, Circulation Research, 115(11), 2014, 919-928 P.S. Skardal, A. Karma, J.G. Restrepo Spatiotemporal Dynamics of Calcium-Driven Cardiac Alternans, Physical Review E, 89(5), 2014, 052707 A. Karma Physics of Cardiac Arrhythmogenesis, Annual Review of Condensed Matter Physics, 4, 2013, 313-337 J.N. Weiss, A. Karma, W.R. MacLellan, M. Deng, C.D. Rau, C.M. Rees, J. Wang, N. Wisniewski, Eskin E, S Horvath, Z.Qu, Y.Wang, A.J. Lusis Good Enough Solutions and the Genetics of Complex Diseases, Circulation Research, 111, 2012, 493-504

SELECTED RESEARCH PROJECTS A Multi-Scale Approach to Cardiac Arrhythmia: from the Molecule to the Organ Co-Principal Investigator, National Institutes of Health Systems Approach to Unraveling the Genetic Basis of Heart Failure Principal Investigator, National Institutes of Health

21

Tali Konry

Scholarship focus: Single cell functional multi-omic analysis, Phenotypic drug profiling in droplet microfluidics for better targeting of drug-resistant tumors, Live single cell functional phenotyping and cell-cell communication in droplet nano-liter reactors Honors and awards: Tufts Clinical and Translational Science Institute Pilot Award, Schumacher Faculty Award

SELECTED PUBLICATIONS S. Sarkar, P. Sabhachandani, R. Dashnamoorthy, S. Potdar, S. Purvey, A. Beheshti, A.M. Evens, T. Konry Dynamic Analysis of Human Natural Killer Cell Response at Single-Cell Resolution in B-cell Non-Hodgkin Lymphoma, Frontiers in Immunology, 8, 2017, 1736 P. Sabhachandani, S. Sarkar, P.C. Zucchi, B.A. Whitfield, J.E. Kirby, E.B. Hirsch, T. Konry Integrated Microfluidic Platform for Rapid Antimicrobial Susceptibility Testing and Bacterial Growth Analysis using Bead Based Biosensor via Fluorescence Imaging, Microchimica Acta, 184(12), 2017, 4619-4628 N. Cohen, S. Sarkar, E. Hondroulis, P. Sabhachandani, T. Konry Quantification of Intercellular Adhesion Forces Measured by Fluid Force Microscopy, Talanta, 2017 N. Cohen, P. Sabhachandani, S. Sarkar, L. Kahanovitz, N. Lautsch, S. Russell, T. Konry Microsphere Based Continuous-Flow Immunoassay in a Microfluidic Device for Determination of Clinically Relevant Insulin Levels, Microchimica Acta, 184(3), 2017, 835-841 S. Sarkar, P. Sabhachandani, T. Konry Ultrasensitive Isothermal Detection of Protein Analytes Using Rolling Circle Amplification in Microscale Platforms, Rolling Circle Amplification (RCA), 2016, 85-97 S. Sarkar, P. Sabhachandani, D. Stroopinsky, K. Palmer, N. Cohen, J. Rosenblatt, D. Avigan, T. Konry Dynamic Analysis of Immune and Cancer Cell Interactions at Single Cell Level in Microfluidic Droplets, Biomicrofluidics, 1(10), 2016, 704-709


Faculty

Abigail Koppes Assistant Professor, Chemical Engineering, Affiliated Faculty, Bioengineering

PhD, Rensselaer Polytechnic Institute, 2013 coe.northeastern.edu/people/koppesabigail Scholarship focus: bioelectric medicine, development of novel interventions and tissue engineered platforms for nerve regeneration and repair, body-on-a-chip for enteric-gut interactions Honors and awards: 2020 Young Innovator of Cellular and Molecular Bioengineering (BMES Society)

SELECTED PUBLICATIONS S. Hosic, W. Lake, E. Stas, R. Koppes, D. Breault, S. Murthy, A. Koppes Cholinergic Activation of Primary Human Derived Intestinal Epithelium does not Ameliorate TNF-Îą Induced Injury, Cellular and Molecular Bioengineering (Journal of BMES), CMBE 2020 Young Innovator Issue, 2020 S. Hosic, M. Puzan, F. Zhou, R. Koppes, D. Breault, S. Murthy, A. Koppes Rapid Prototyping of a Multilayer Microphysiological System for Primary Human Intestinal Epithelial Culture, ACS Biomaterials Science & Engineering, 2020 K. Nichols, R. Koppes, A. Koppes Recent Advancements in Microphysiological Systems for Neural Development and Disease, Invited Review; Current Opinion in Biomedical Engineering, 2020 M. Puzan, S. Hosic, C. Ghio, A.N. Koppes Enteric Nervous System Regulation of Intestinal Stem Cell Differentiation and Epithelial Monolayer Function, Scientific Reports, 8(1), 2018, 6313 D. Ventre, M. Puzan, E. Ashbolt, A.N. Koppes Enhanced Total Neurite Outgrowth and Secondary Branching in Dorsal Root Ganglion Neurons Elicited by Low Intensity Pulsed Ultrasound, Journal of Neural Engineering, 15(4), 2018, 046013

SELECTED RESEARCH PROJECTS Bioengineer Autonomic Neurovascular System to Explore the Innervation of Vascular Grafts Co-Investigator, American Heart Association GUMI: New in Vitro Platforms to Parse the Human Gut Epithelial-Microbiome-Immune Axis Co-Investigator, National Institutes of Health Trailblazer: Engineering a Humanized Gut-Enteric-Axis Principal Investigator, National Institutes of Health

Carolyn Lee-Parsons Associate Professor, Chemical Engineering; Jointly appointed, Chemistry; affiliated faculty, Bioengineering

PhD, Cornell University, 1995 coe.northeastern.edu/people/leeparsons-carolyn Scholarship focus: production of valuable pharmaceutical compounds from plant cell cultures, specifically the production of important anti-cancer drug molecules from cell cultures of Catharanthus Roseus Honors and awards: National Science Foundation CAREER Award; College of Engineering Outstanding Teaching Award, University Excellence in Teaching Award

SELECTED PUBLICATIONS R. GrĂźtzner, P. Martin, C. Horn, S. Mortensen, E.J. Cram, C.W.T. Lee-Parsons, J. Stuttmann, S. Marillonnet Addition of Multiple Introns to a Cas9 Gene Results in Dramatic Improvement in Efficiency for Generation of Gene Knockouts in Plants, BioRxIV, 2020 S. Mortensen, D. Bernal-Franco, L.F. Cole, S. Sathitloetsakun, E.J. Cram, C.W.T Lee-Parsons EASI transformation: An Efficient Transient Expression Method for Analyzing Gene Function in Catharanthus Roseus Seedlings, Frontiers in Plant Sciences, 2019 S. Mortensen, J. Weaver, S. Sathitloetsakun, L.F. Cole, N.F. Rizvi, E.J. Cram, C.W.T Lee-Parsons The Regulation of Zct1, a Transcriptional Repressor of Monoterpenoid Indole Alkaloid Biosynthetic Genes in Catharanthus roseus, Plant Direct, 3, 2019, 1-13 L. Kirchner, A. Wirshing, L. Kurt, T. Reinard, J. Glick, E.J. Cram, H-J. Jacobsen, C.W.T. Lee-Parsons Identification, Characterization, and Expression of Diacylglycerol Acyltransferase Type-1 from Chlorella Vulgaris, Algal Research, 13, 2016, 167-181

SELECTED RESEARCH PROJECTS Production of Chemotherapeutic Drugs from the Periwinkle Plant Principal Investigator, Massachusetts Technology Transfer Center Production of Chemotherapeutic Drugs from the Periwinkle Plant Principal Investigator, GapFund360 Zinc Finger (ZCT) Transcription Factors: Pivotal Regulators of Growth, Development, and Alkaloid Biosynthesis in Catharanthus Roseus Principal Investigator, National Science Foundation

22


Faculty

Danielle Levac Assistant Professor, Physical Therapy, Movement and Rehabilitation Science; affiliated faculty, Bioengineering

PhD, McMaster University, 2012 coe.northeastern.edu/people/levacdanielle Scholarship focus: virtual reality; video games; motor learning; rehabilitation; physical therapy; cerebral palsy; stroke; knowledge translation Honors and awards: Early Career Investigator Award, International Society for Virtual Rehabilitation

SELECTED PUBLICATIONS R. Proffitt, S. Glegg, D.E. Levac, B. Lange End-User Involvement in Rehabilitation Virtual Reality Implementation Research: Benefits, Challenges and Lessons Learned, Journal of Enabling Technologies, 2019 N. Rohrbach, E. Chicklis, D.E. Levac What is the Impact of User Affect on Motor Learning in Virtual Environments After Stroke? A scoping review, Journal of NeuroEngineering and Rehabilitation, 16(79), 2019 D.E. Levac, H. Dumas, W. Meleis Development and Preliminary Usability Evaluation of a Tablet-Based Interactive Movement Tool for Pediatric Rehabilitation, JMIR: Rehabilitation and Assistive Technology, 5(2), 2018, e10307 R. Mills, D. Levac, H. Sveistrup Kinematics and Postural Muscular Activity During Continuous Oscillating Platform Movement in Children and Adolescents with Cerebral Palsy, Gait & Posture, 66, 2018, 13-20 R. Mills, D.E. Levac, H. Sveistrup The Effects of a 5-Day Intensive Virtual-Reality Based Exercise Programme on Kinematics and Postural Muscle Activity in Children and Adolescents with Cerebral Palsy – Preliminary Findings, Physical & Occupational Therapy in Pediatrics, 39(4), 2018, 1-16

SELECTED RESEARCH PROJECTS Enhancing Transfer of Motor Skill Learning from Virtual to Physical Environments in Children with Cerebral Palsy Principal Investigator, National Institutes of Health K01 Influence of Virtual Environment Complexity on Motor Learning in Children with Cerebral Palsy: Implications for Virtual Reality Use in Rehabilitation Principal Investigator, Tufts Clinical and Translational Science Institute Pilot Grant

23

Erel Levine Associate Professor, Bioengineering

PhD, Weizmann Institute of Science, 2005 coe.northeastern.edu/people/levineerel Scholarship focus: systems and synthetic biology of the BrainImmune-Gut super-system; Interactions among hosts and microbes; Deep learning approaches to interpreting biological data and designing biomedical solutions Honors and awards: National Science Foundation Postdoctoral Fellowship, Center for Theoretical Biological Physics

SELECTED PUBLICATIONS K.S. Lee, E. Levine Microfluidic Platform for Longitudinal Imaging in C. Elegans, Journal of Visualized Experiments, 135, 2017 E. Korkmazhan, H. Teimouri, N. Peterman, E. Levine The Dynamics of Translation can Determine the Spatial Organization of Membrane-Bound Proteins and their mRNA, National Academy of Sciences, 114(51), 2017, 13424-13429 M. Scholtz, A. Diner, D. Biron, E. Levine Feeding Dynamics are Controlled by the Need for Energy and for Information, National Academy of Sciences, 114(35), 2017, 9261–9266 H. Teimouri, E. Korkmazhan, J. Stavans, E. Levine ESub-Cellular mRNA Localization Modulates the Regulation of Gene Expression by Small RNAs in Bacteria, Physical Biology, 14(5), 2017, 056001 A. Bitran, W.Y. Chiang, E. Levine, M. Prentiss Mechanisms of Fast and Stringent Search in Homologous Pairing of Double-Stranded DNA, PLoS Computational Biology 13(3), 2017, e1005421 K.S. Lee, S. Iwanir, R. Kopito, D. Biron, E. Levine Regulation of Food Uptake by Serotonin-Dependent Balance Between Two Modes of Feeding, Nature Commications, 8, 2017, 1422

SELECTED RESEARCH PROJECTS Sub-Cellular Localization and Small RNA and Regulation of the Outer Membrane Principal Investigator, National Science Foundation


Faculty

Herbert Levine University Distinguished Professor, Physics, jointly appointed in Bioengineering

PhD, Princeton University, 1979 coe.northeastern.edu/people/levineherbert Scholarship focus: physical modeling of cancer progression, metastasis and interaction with the immune system. Most recent interests include the role of metabolic plasticity in these processes and the co-evolution of the tumor and the adaptive immune system. Other areas include spatial organization of the actin cytoskeleton, the mechanics of collective cell motility, and the analysis of genetic circuits involved in cell fate decisions Honors and awards: Member, National Academy of Sciences, Member, American Academy of Arts and Sciences, Fellow, American Physical Society, Alfred P. Sloan Foundation Research Fellowship (1988)

SELECTED PUBLICATIONS J.T. George, H. Levine Sustained Coevolution in a Stochastic Model of Cancer– Immune Interaction, Cancer Research 80(4), 2020, 811-819 L. James, C. Bueno, Y. Eliaz, N.P. Schafer, M.N. Waxham, P.G. Wolynes, H. Levine, M.S. Cheung The Role of the Arp2/3 Complex in Shaping the Dynamics and Structures of Branched Actomyosin Networks, Proceedings of the National Academy of Sciences, 117(20), 2020, 10825-10831 M.K. Jolly, S.A. Mani, H. Levine Hybrid Epithelial/Mesenchymal Phenotype(s): The ‘Fittest’ for Metastasis?, Biochimica et Biophysica Acta Reviews on Cancer (BBA), 2018 J.T. George, D.A. Kessler, H. Levine Effects of Thymic Selection on T Cell Recognition of Foreign and Tumor Antigenic Peptides, Proceedings of the National Academy of Sciences, 114(38), 2017, E7875-E7881 M.K. Jolly, K.E. Ware, S. Gilja, J.A. Somarelli, H. Levine EMT and MET: Necessary or Permissive for Metastasis?, Molecular Oncology, 11 (7), 2017, 755-769

SELECTED RESEARCH PROJECTS The Cancer-Immune Interaction Principal Investigator, Stand up to Cancer and the Breast Cancer Foundation The Role of Epithelial Plasticity in Cancer Metastasis Principal Investigator, National Science Foundation

Kim Lewis University Distinguished Professor, Biology; Director, Antimicrobial Discovery Center; affiliated faculty, Bioengineering

PhD, Moscow University, 1980 coe.northeastern.edu/people/lewis-kim Scholarship focus: antimicrobial drug tolerance, antibiotic discovery, microbiome therapeutics

SELECTED PUBLICATIONS K. Lewis The Science of Antibiotic Discovery, Cell, 181, 2020, 29-45 Y. Imai, K.J. Meyer, A. Iinishi, Q. Favre-Godal, R. Green, S. Manuse, A. O’Rourke, K. Lewis, et al. A New Antibiotic Selectively Kills Gram-Negative Pathogens, Nature, 576, 2019, 459-464 B.P. Conlon, S.E. Rowe, A. Brown Gandt, A.S. Nuxoll, N.P. Donegan, E.A. Zalis, G. Clair, J.N. Adkins, A.L. Cheung, K. Lewis ATP Depletion is Associated with Antibiotic Tolerance in Staphylococcus Aureus, Nature Microbiology, 1, 2016, 1-7 L.L. Ling, T. Schneider, A.J. Peoples, A.L. Spoering, I. Engels, B.P. Conlon, A. Mueller, T.F. Schäberle, D.E. Hughes, S. Epstein, M. Jones, L. Lazarides, V.A. Steadman, D.R. Cohen, C.R. Felix, K.A. Fetterman, W.P. Millett, A.G. Nitti, A.M. Zullo, C. Chen, K. Lewis A New Antibiotic Kills Pathogens Without Detectable Resistance, Nature, 517, 2015, 455-459 M.A. Schumacher, P. Balani, J. Min, N.B. Chinnam, S. Hansen, M. Vulic, K. Lewis, R.G. Brennan HipAB–Promoter Structures Reveal the Basis of Heritable Multidrug Tolerance, Nature, 524, 2015, 59-64 B.P. Conlon, E.S. Nakayasu, L.E. Fleck, M.D. LaFleur, V.M. Isabella, K. Coleman, S.N. Leonard, R.D. Smith, J.N. Adkins, K. Lewis Activated ClpP Kills Persisters and Eradicates a Chronic Biofilm Infection, Nature, 503, 2013, 365-370

SELECTED RESEARCH PROJECTS Friend or Foe, Determining the Pathogenic Potential of Environmental Bacteria Principal Investigator, Defense Advanced Research Projects Agency Resolving the Bottleneck in Antibiotic Discovery Principal Investigator, National Institutes of Health

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Faculty

Elizabeth Libby

Jiahe Li Assistant Professor, Bioengineering

Assistant Professor, Bioengineering (Joining Janurary 2021)

PhD, Cornell University, 2015 coe.northeastern.edu/people/li-jiahe

PhD, University of Pennsylvania, 2011 coe.northeastern.edu/people/libbyelizabeth Scholarship focus: synthetic biology, microbiology, biosensor development

SELECTED PUBLICATIONS E.A. Libby, S. Reuveni, J. Dworkin Multisite Phosphorylation Drives Phenotypic Variation in (p)ppGpp Synthetase-Dependent Antibiotic Tolerance, Nat Commun, 10, 2019, 5133 E.A. Libby, P.A. Silver Harnessing Undomesticated Life, Nature Microbiology, 4(2), 2019, 212–213 E.A. Libby, J. Dworkin Habits of Highly Effective Biofilms: Ion Signaling, Molecular Cell, 66(6), 2017, 733-734 S. Sarkar, E.A. Libby, S.E. Pidgeon, J. Dworkin, M.M. Pires In Vivo Probe of Lipid II-Interacting Proteins, Angewandte Chemie Int Ed Engl, 2016 E.A. Libby, L.A. Goss, J. Dworkin The Eukaryotic-Like Ser/Thr Kinase PrkC Regulates the Essential WalRK Two-Component System in Bacillus subtilis, PLoS Genet, 11(6), 2015, e1005275

immunotherapy

Scholarship focus: oral vaccine, host and oral microbiome interactions, microbiome engineering, and protein engineering-based cancer

Honors and awards: 2018 Peer Reviewed Medical Research Program Discovery Award, Department of Defense

SELECTED PUBLICATIONS Yang M, Zhu G, Korza G, Sun X, Setlow P, J. Li Engineering Bacillus subtilis as a Versatile and Stable Platform for Production of Nanobodies, Applied and Environmental Microbiology, 86(8), 2020 Y. He, C. Hong, Z.E. Yan, Y. Li, G. Zhu, M. Yang, Y. Li, X. Sun, D.J. Irvine, L. Li, P.T. Hammond Self-Assembled cGAMP-STING ΔTM Signaling Complex as a Bioinspired Platform for cGAMP Delivery, Science Advances, 6(24), 2020, eaba7589 J. Li, Y. He, W. Wang, C. Wu, C. Hong, P.T. Hammond Polyamine-Mediated Stoichiometric Assembly of Ribonucleoproteins for Enhanced mRNA Delivery, Angewandte Chemie, 2017 M.R. Zanotelli, Z.E. Goldblatt, J.P. Miller, F. Bordeleau, J. Li, J.A. VanderBurgh, M.C. Lampi, M.R. King, C.A. Reinhart-King Regulation of ATP Uilization During Metastatic Cell Migration by Collagen Architecture, Molecular Biology of the Cell, 2017 J. Li, W. Wang, Y. He, Y. Li, E. Yan, D.J. Irvine, P.T. Hammond Structurally Programmed Assembly of Translation Initiation Nanoplex for Superior mRNA Delivery, CS Nano, 11(3), 2017, 2531-2544 J. Li, C.C. Sharkey, J. Liesveld, M.R. King. Genetic Engineering of Platelets to Neutralize Circulating Tumor Cells, J Control Release, 228, 2016, 38-47 J. Li, Y. Ai, L. Wang, P. Bu, C.C. Sharkey, Q. Wu, B. Wun, S. Roy, X. Shen, M.R. King Platelet Membrane-Functionalized Particles to Target Tumor Cell-Associated Micro-Thrombi, Biomaterials, 76, 2016, 52-65

SELECTED RESEARCH PROJECTS

25

Research Capability Grant Principal Investigator, Research and Innovation Agency at the Ministry of Education in Saudi Arabia Cancer Drug Development Award Principal Investigator, Dana-Farber Cancer Institute/ Northeastern University


Faculty

Yingzi Lin Professor, Mechanical and Industrial Engineering; affiliated faculty appointed in: Bioengineering

PhD, University of Saskatchewan, 2004 coe.northeastern.edu/people/lin-yingzi Scholarship focus: Human-machine systems, human factors, biosensing and smart systems, human state and behavior modeling, transportation safety, healthcare and patient safety, human friendly mechatronics and humanrobot interaction Honors and awards: National Science Foundation CAREER Award

SELECTED PUBLICATIONS

J. Du, Q. Zhu, Y. Shi, Q. Wang, Y. Lin, D. Zhao Cognition-Digital Twins (Cog-DT) for Personalized Information Systems of Smart Cities – A Proof of Concept, ASCE Journal of Management in Engineering, 36(2), 2020 D. Schmidt, Y. Lin Development Towards Simple Fabrication Steps for Flexible Optoelectronic Films, Thin Solid Films, 665, 2018, 59-67 X. Wanyan, D. Zhuang, Y. Lin, X. Xiao, J.-W. Song Influence of Mental Workload on Detecting Information Varieties Revealed by Mismatch Negativity During Flight Simulation, International Journal of Industrial Ergonomics, 64, 2018, 1–7 B. Liang, Y. Lin Using Physiological and Behavioral Measurements in a Picture-Based Road Hazard Perception Experiment to Classify Risky and Safe Drivers, Transportation Research Part F: Psychology and Behaviour, 58, 2018, 93-105 Y. Lin, J. Breugelmans, M. Iverson, D. Schmidt An Adaptive Interface Design (AID) for Enhanced Computer Accessibility and Rehabilitation, International Journal of Human Computer Studies, 98, 2017, 14–23

SELECTED RESEARCH PROJECTS Cognition-Driven Display for Navigation Activities (CogDNA): Personalized Spatial Information System Based on Information Personality of Firefighters Co-Investigator, National Institute of Standards and Technology Computational Methods for Continuous Objective Multimodal Pain Assessment Sensing System (COMPASS) Principal Investigator, National Science Foundation Decoding Multi-Modal Physiological Response Patterns for Assessing Post-Stroke Cognitive Impairment in VR-based Driving Co-Investigator, National Institutes of Health

Carol Livermore Associate Professor, Mechanical and Industrial Engineering; affiliated faculty, Bioengineering, Electrical and Computer Engineering

PhD, Harvard University, 1998 coe.northeastern.edu/people/ livermore-clifford-carol Scholarship focus: MEMS-enabled systems for assistive technologies, energy harvesting, and microscale vacuum applications; origami-enabled microfluidics and tissue engineering; carbon nanomaterials Honors and awards: College of Engineering Faculty Fellow; National Science Foundation CAREER Award

SELECTED PUBLICATIONS X. Xie, S. Maharjan, S. Liu, Y.S. Zhang, C. Livermore A Modular, Reconfigurable Microfabricated Assembly Platform for Microfluidic Transport and Multitype Cell Culture and Drug Testing, Micromachines, 11(1), 2020, 2 X. Xie, M. Bigdeli Karimi, S. Liu, B. Myanganbayar, C. Livermore Micro Motion Amplifiers for Compact Out-of-Plane Actuation, Micromachines, 9(7), 2018, 365 X. Xie, C. Kelly, T. Liu, R.J. Lang, S. Gandolfo, Y. Boukataya, C. Livermore Origami-Enabled Microfluidics, Proceedings of the 2018 Hilton Head Solid State Sensors, Actuators, and Microsystems Workshop, 2018, 376-377 X. Xie, C. Livermore Passively Self-Aligned Assembly of Compact Barrel Hinges for High-performance, Out-of-Plane MEMS Actuators, IEEE 30th International Conference on Micro Electro Mechanical Systems, 2017, 813-816 C. Yang, X. Xie, S. Liu, C. Livermore Resealable, Ultra-Low Leak Micro Valve Using Liquid Surface Tension Sealing for Vacuum Applications, Proceedings of Transducers, 2017, 2071-2074 C. Yang, S. Liu, X. Xie, C. Livermore Compact, Planar, Translational Piezoelectric Bimorph Actuator with Archimedes’ Spiral Actuating Tethers, Journal of Micromechanics and Microengineering, 26(2), 2016, 124005

26


Faculty

Mingyang Lu Assistant Professor, Bioengineering

PhD, Baylor University, 2010 coe.northeastern.edu/people/lumingyang Scholarship focus: computational systems biology, an integration of mathematical modeling and bioinformatics for studying gene regulatory networks, single cell genomics, epithelial-mesenchymal transition, coarse-graining, reverse engineering, machine learning, stochasticity and heterogeneity in gene expression Honors and awards: Cancer Prevention Research Institute of Texas (CPRIT) Computational Cancer Biology Training Grant RP140113

SELECTED PUBLICATIONS A. Katebi, V. Kohar, M. Lu Random Parametric Perturbations of Gene Regulatory Circuit Uncover State Transitions in Cell Cycle, iScience, 23(6), 2020, 101150 D. Ramirez, V. Kohar, M. Lu Toward Modeling Context-Specific EMT Regulatory Networks Using Temporal Single Cell RNA-Seq Data, Front Mol Biosci, 7, 2020, 54 D. Jia, M. Lu, K.H. Jung, J.H. Park, L. Yu, J. Onuchic, B.A. Kaipparettu, H. Levine Elucidating Cancer Metabolic Plasticity by Coupling Gene Regulation with Metabolic Pathways, Proceedings of the National Academy of Sciences of the United States of America, 116(9), 2019, 3909-3918 V. Kohar, M. Lu. Role of Noise and Parametric Variation in the Dynamics of Gene Regulatory Circuits, NPJ Systems Biology and Applications, 4(40), 2018 B. Huang, M. Lu, D. Jia, E. Ben-Jacob, H. Levine, J. Onuchic Interrogating the Topological Robustness of Gene Regulatory Circuits by Randomization, PLOS Computational Biology, 13(3), 2017, e1005456 L. Yu, M. Lu, D. Jia, J. Ma, E. Ben-Jacob, H. Levine, B.A. Kaipparettu, J. Onuchic Modeling the Genetic Regulation of Cancer Metabolism: Interplay Between Glycolysis and Oxidative Phosphorylation, Cancer Research, 77(7), 2017, 1564

SELECTED RESEARCH PROJECTS New Computational Systems Biology Methods for Modeling Gene Regulatory Circuits Principal Investigator, National Institutes of Health

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Lee Makowski Professor and Chair, Bioengineering; jointly appointed, Chemistry and Chemical Biology; affiliated faculty, Electrical and Computer Engineering

PhD, Massachusetts Institute of Technology, 1976 coe.northeastern.edu/people/ makowski-lee Scholarship focus: image and signal processing as applied to biophysical data designed to answer fundamental questions about the molecular basis of living systems, and progression of Alzheimer’s Disease

SELECTED PUBLICATIONS B. Roig-Solvas, D.H, Brooks, L. Makowski FiXR: A Framework to Reconstruct Fiber CrossSections from X-Ray Fiber Diffraction Experiments, Acta Crystallographica, 2020, D76 B. Roig-Solvas, B.T. Hyman, L. Makowski In Situ Saxs of Protein Deposits in Alzheimer’s Disease, bioRxiv, 2019 L. Makowski The Structural Basis of Amyloid Strains in Alzheimer’s Disease, ACS Biomaterials Science and Engineering, 2019 H. Zhou, H. Guterres, C. Mattos, L. Makowski Predicting X‐Ray Solution Scattering from Flexible Macromolecules, Protein Science, 27, 2018, 2023-2036 B. Roig-Solvas, L. Makowski Calculation of the Cross-Sectional Shape of a Fibril from Equatorial Scattering, Journal of Structural Biology 200(3), 2017, 248-257

SELECTED RESEARCH PROJECTS Cultivating Biomedical Entrepreneurship and Innovation in Ghana Principal Investigator, Northeastern University Localization of Fibrillar Polymorphs in Human Brain Tissue Principal Investigator, National Institutes of Health


Faculty

Waleed Meleis Associate Dean for Graduate Education; Associate Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, University of Michigan, 1996 coe.northeastern.edu/people/meleiswaleed Scholarship focus: combinatorial optimization; algorithm design and analysis; scheduling; large-scale machine learning; parallel computing Honors and awards: COE Outstanding Faculty Service Award in, COE Fostering Engineering Innovation in Education Award; Black Engineering Student Society Professor Appreciation Award; Invited to represent Northeastern at the National Academy of Engineering’s Frontiers of Engineering Education Symposium; College of Engineering Outstanding Teacher Award; Martin W. Essigmann Outstanding Teaching Award, College of Engineering; Eta Kappa Nu Professor of the Year Award; Center for Innovative Course Design Teaching Award, EdTech

SELECTED PUBLICATIONS W. Li, W. Meleis Adaptive Adjacency Kanerva Coding for MemoryConstrained Reinforcement Learning, In International Conference on Machine Learning and Data Mining in Pattern Recognition (MLDM), Springer, New York, 2018 D. Levac, H. Dumas, W. Meleis Development and Preliminary Usability Evaluation of a Tablet-Based Interactive Movement Tool for Pediatric Rehabilitation, JMIR Rehabilitation Assistive Technologies 25(2), 2018, e1030 W. Li, F. Zhou, K. Chowdhury, W. Meleis QTCP: Adaptive Congestion Control with Reinforcement Learning, IEEE Transactions on Network Science and Engineering, 2018, 1-1 W. Li, F. Zhou, W. Meleis, K. Chowdhury Dynamic Generalization Kanerva Coding in Reinforcement Learning for TCP Congestion Control Design, Proceedings of the 16th International Conference on Autonomous Agents and Multiagent Systems, Sao Paolo, Brazil, 2017 J. Radford, A. Pilny, A. Reichelmann, B. Keegan, B. Welles, J. Hoye, K. Ognyanova, W. Meleis, D. Lazer Volunteer Science: An Online Laboratory for Experiments in Social Psychology, Social Psychology Quarterly, 79(4), 2016

Mona Minkara Assistant Professor, Bioengineering; Affiliated Faculty, Chemistry & Chemical Biology

PhD, University of Florida, 2015 bioe.neu.edu/people/minkara-mona Scholarship focus: computational modeling of molecular interactions that occur at biological interfaces, pulmonary surfactant, Monte Carlo and molecular dynamics simulations, molecular docking for targeted drug design Honors and awards: Ford Foundation Fellowship from the National Academies of Sciences, Engineering, and Medicine; National Science Foundation Graduate Research Fellowship

SELECTED PUBLICATIONS

M.S. Minkara, R.H. Hembree, S.N. Jamadagni, A.F. Ghobadi, D.M. Eike, J.I. Siepmann A New Equation of State for Homo-Polymers in Dissipative Particle Dynamics, The Journal of Chemical Physics, 150, 2019, 124104 T.R. Josephson, R. Singh, M.S. Minkara, E.O. Fetisov, J.I. Siepmann Partial Molar Properties From Molecular Simulation Using Multiple Linear Regression, Molecular Physics, 117, 2019, 3589-3602 M.S Minkara, T. Josephson, C.L. Venteicher, J.L. Chen, D.J. Stein, C.J. Peters, J.I. Siepmann Monte Carlo Simulations Probing the Liquid/Vapour Interface of Water/Hexane Mixtures: Adsorption Thermodynamics, Hydrophobic Effect, and Structural Analysis, Molecular Physics, 116, 2018, 3283-3291 M.S. Minkara, R.K. Lindsey, R.H. Hembree, C.L. Venteicher, S.N. Jamadagni, D.M. Eike, A.F. Ghobadi, P.H. Koenig, J.L. Siepmann Probing Additive Loading in the Lamellar Phase of a Nonionic Surfactant: Gibbs Ensemble Monte Carlo Simulations using the SDK Force Field, Langmuir, 34(28), 2018, 8245-8254 L. Macomber, M.S. Minkara, R.P. Hausinger, K.M. Merz Jr. Reduction of Urease Activity by Interaction with the Flap Covering the Active Site, Journal of Chemical Information and Modeling, 55(2), 2015, 354-361

SELECTED RESEARCH PROJECTS Modeling and Computation for Discovery of Molecular Probes for SARS-CoV-2 Proteins Co-Principal Investigator, National Science Foundation

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Faculty

Mark Niedre Professor and Associate Chair for Research, Bioengineering

PhD, University of Toronto, 2004 coe.northeastern.edu/people/niedremark Scholarship focus: biomedical optics and non-invasive imaging, rare cell detection and tracking in the body, ultrafast time-domain diffuse optical imaging, image reconstruction and biomedical signal processing Honors and awards: College of Engineering Faculty Fellow; Massachusetts Life Sciences Center New Investigator Award; Søren Buus Outstanding Research Award, College of Engineering

SELECTED PUBLICATIONS

R. Patil, M. Srinivasarao, M. Amiji, P.S. Low, M. Niedre Fluorescence Labeling of Circulating Tumor Cells with a Folate Receptor-Targeted Molecular Probe for Diffuse In Vivo Flow Cytometry, Molecular Imaging and Biology, 2020 W. Di, X. Tan, I.A.C. Calderon, A.E. Reilly, M. Niedre, H.A. Clark Real-time Particle-By-Particle Detection of ErythrocyteCamouflaged Microsensor With Extended Circulation Time in the Bloodstream, Proceedings of the National Academy of Sciences USA, 11(7), 2020, 3509-3517 X. Tan, R. Patil, P. Bartosik, J. Runnels, C.P. Lin, M. Niedre Ultra-Rare In Vivo Flow Cytometry, Scientific Reports, 9(1), 2019, 3366 V. Pera, X. Tan, J. Runnels, N. Sardesai, C.P. Lin, M. Niedre Diffuse Fluorescence Fiber Probe for In Vivo Detection of Circulating Cells, Journal of Biomedical Optics, 22(3), 2017, 037004 C. Hartmann, R. Patil, C.P. Lin, M. Niedre Fluorescence Detection, Enumeration and Characterization of Single Circulating Cells In Vivo: Technology, Applications and Future Prospects, Physics in Medicine and Biology, 63 (1), 2017, 01TR01 Y. Mu, V. Pera, M. Niedre Multiplexed Fluorescence Mediated Tomography with Temporal and Spectral Data, Journal of Biomedical Optics, 21(10), 2016, 105001

SELECTED RESEARCH PROJECTS High Resolution Multiplexed Fluorescence Tomography Principal Investigator, National Institutes of Health Ultra-Rare Cell In Vivo Flow Cytometry Principal Investigator, National Institutes of Health

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Jessica Oakes Assistant Professor, Bioengineering; affiliated faculty, Mechanical and Industrial Engineering

PhD, University of San Diego, 2013 coe.northeastern.edu/people/oakesjessica Scholarship focus: pulmonary physiology, biofluids and transport phenomenon, computational biomechanics, magnetic resonance imaging, multi-scale modeling

SELECTED PUBLICATIONS J.M. Oakes, D.G. Mummy, K. Poorbahrami, W. Zha, S. Fain Patient-Specic Computational Simulations of Hyperpolarized 3He MRI Ventilation Defects in Healthy and Asthmatic Subjects, IEEE Transactions of Biomedical Engineering, 66, 2019, 1318-1327 K. Poorbahrami, J.M. Oakes Regional Flow and Deposition Variability in Adult Female Lungs: A Numerical Simulation Pilot Study, Clinical Biomechanics, 66, 2019, 66: 40-49 J.M. Oakes, S.C. Roth, S.C. Shadden Airflow Simulations in Infant, Child, and Adult Pulmonary Conducting Airways, Annals of Biomedical Engineering, 46, 2018, 498-512 J.M. Oakes, S.C. Shadden, C. Grandmont, I.E. Vignon-Clementel Aerosol Transport Throughout Inspiration and Expiration in the Pulmonary Airways, International Journal of Numerical Methods in Biomedical Engineering, 33, 2017, e2847 J.M. Oakes, P. Hofemeier, I.E. Vignon-Clementel, J. Sznitman Aerosols in Healthy and Emphysematous In Silico Pulmonary Acinar Rat Models, Journal of Biomechanics, 49(11), 2016, 2213-2220

SELECTED RESEARCH PROJECTS Coupling MRI with Modeling to Assess Treatment Feasibility in Asthma Principal Investigator, National Institutes of Health Health Consequences Following Firefighter Exposure to Wildland Fire Smoke Principal Investigator, Department of Homeland Security, Federal Emergency Management Agency, Assistance to Firefighters Grants Program Pulmonary Health Consequences Following E-Cigarette Exposure Principal Investigator, National Institutes of Health


Faculty

Donald O’Malley Associate Professor, Biology; affiliated faculty, Bioengineering

PhD, Harvard, 1989 coe.northeastern.edu/people/omalleydonald Scholarship focus: cellular and systems neurobiology biological imaging, cognitive neurodynamics, neuroethology

SELECTED PUBLICATIONS D.M. O’Malley, M. Orger, F. Engert Neural Control and Modulation of Swimming Speed in the Larval Zebrafish, Neuron, 83(3), 2014, 692-707 L. Ricci, C.H. Summers, E.T. Larson, D.M. O’Malley, R.H. Melloni Development of Aggressive Phenotypes: Interactions of Age, Experience, and Social Status, Animal Behaviour, 86(2), 2013, 245-252 R.E. Westphal, D.M. O’Malley Fusion of Locomotor Maneuvers, and Improving Sensory Capabilities, Give Rise to the Flexible Homing Strikes of Juvenile Zebrafish, Front, Neural Circuits, 7(108), 2013, 1-18 N. Sankrithi, D.M. O’Malley Activation of a Multisensory, Multifunctional Nucleus in the Zebrafish Midbrain During Diverse Locomotor Behaviors, Neuroscience, 166(3), 2010, 970-993 M. Kamali, L. Day, D. Brooks, X. Zhou, D.M. O’Malley Automated Identification of Neurons in 3D Confocal Datasets from Zebrafish Brainstem, Journal of Microscopy, 233(1), 2009, 114-131

Mary Jo Ondrechen Professor, Chemistry and Chemical Biology; affiliated faculty, Bioengineering

PhD, Northwestern University, 1978 coe.northeastern.edu/people/ ondrechen-mary-jo Scholarship focus: enzyme catalysis; functional genomics; modeling of enzyme substrate interactions; drug discovery; bioinformatics; protein design

SELECTED PUBLICATIONS

L. Ngu, J.N. Winters, K. Nguyen, K.E. Ramos, N.A. DeLateur, L. Makowski, P.C. Whitford, M.J Ondrechen, P.J. Beuning Probing Remote Residues Important for Catalysis In Escherichia Coli Ornithine Transcarbamoylase, PLoS ONE 15(2), 2020, e0228487 R.N. Hanson, E. McCaskill, E. Hua, P. Tongcharoensirikul, R. Dilis, J.L. Silver, T.A. Coulther, M.J. Ondrechen, D. Labaree, R.B. Hochberg Synthesis of Benzoylbenzamide Derivatives of 17α-EVinyl Estradiol and Evaluation as Ligands for the Estrogen Receptor-a Ligand Binding Domain, Steroids, 144, 2019, 15-20 D.J. MacPherson, C.L. Mills, M.J. Ondrechen, J.A. Hardy Tri-Arginine Exosite Patch of Caspase-6 Recruits Substrates for Hydrolysis, Journal of Biological Chemistry, 294(1), 2019, 71-88 C.L. Mills, R. Garg, J.S. Lee, L. Tian, A. Suciu, G. Cooperman, P.J. Beuning, M.J. Ondrechen Functional Classification of Protein Structures by Local Structure Matching in Graph Representation, Protein Science, 27, 2018, 1125-1135

SELECTED RESEARCH PROJECTS Lighting the Pathway to Faculty Careers for Natives in STEM Co-Principal Investigator, National Science Foundation Mining for Mechanistic Information to Predict Protein Function Principal Investigator, National Science Foundation Northeastern University Skills and Capacity for Inclusion: Inclusive Excellence Catalyzed by Experiential Education Principal Investigator, Howard Hughes Medical Institute RAPID: Identification of Chemical Probes and Inhibitors Targeting Novel Sites on SARS-CoV-2 Proteins for COVID-19 Intervention Principal Investigator, National Science Foundation Tethering SOD1 Cysteine Pairs with Cyclic Disulfides: a New Method for Protein Stabilization Co-Principal Investigator, ALS Association

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Faculty

Hari Parameswaran Assistant Professor, Bioengineering

PhD, Boston University, 2009 coe.northeastern.edu/people/ parameswaran-harikrishnan Scholarship focus: mechanobiology of the smooth muscle, mechanisms of force transmission in multicellular ensembles, methods for targeting extracellular matrix for asthma therapy

SELECTED PUBLICATIONS

D.A. Vargas, T. Heck, B. Smeets, H. Ramon, H. Parameswaran, H. Van Oosterwyck Intercellular Adhesion Stiffness Moderates Cell Decoupling as a Function of Substrate Stiffness, Biophysical Journal, 2020 S.E. Stasiak, R.R. Jamieson, J. Bouffard, E.J. Cram, H. Parameswaran Intercellular Communication Controls Agonist-Induced Calcium Oscillations Independently of Gap Junctions in Smooth Muscle Cells, Science Advances, 6(32),2020 J.R. Mondoñedo, S. Sato, T. Oguma, S. Muro, A.H. Sonnenberg, D. Zeldich, H. Parameswaran, T. Hirai, B. Suki CT Imaging-Based Low-Attenuation Super Clusters in Three Dimensions and the Progression of Emphysema, Chest, 155(1), 2019, 79-87 S.R. Polio, S.E. Stasiak, R.R. Jamieson, J.L. Balestrini, R. Krishnan, H. Parameswaran Extracellular Matrix Stiffness Regulates Human Airway Smooth Muscle Contraction by Altering the Cell-Cell Coupling, Scientific Reports, 9, 2019, 9564 J. Imsirovic, E. Bartolák-Suki, S.B. Jawde, H. Parameswaran, B. Suki Blood Pressure-Induced Physiological Strain Variability Modulates Wall Structure and Function in Aorta Rings, Physiological Measurement, 39(10), 2018, 105014 H. Parameswaran, B. Suki Assessing Structure-Function Relations in Mice Using the Forced Oscillation Technique and Quantitative Histology, Methods in Molecular Biology, 1639, 2017, 77-91 S.M. Cloonan, K. Glass, A.R. Bhashyam, M.E. Laucho Contreras, H. Parameswaran, et al. Mitochondrial Iron Chelation Ameliorates Cigarette Smoke-Induced Bronchitis and Emphysema in Mice, Nature Medicine, 22, 2016, 163-174

SELECTED RESEARCH PROJECTS

Extracellular Determinants of Airway Smooth Muscle Force: A New Paradigm for Sustained Airway Constriction Principal Investigator, R00 Award, National Institutes of Health

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Carey Rappaport COE Distinguished Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, Massachusetts Institute of Technology, 1987 coe.northeastern.edu/people/ rappaport-carey Scholarship focus: antennas, electromagnetic computation, subsurface sensing and imaging, explosives detection, security system conceptualization and design. Bioelectromagnetics, microwave tissue imaging, electromagnetic breast cancer detection and treatment, cardiac ablation therapy, microwave assisted balloon angioplasty, catheter-based sensing Honors and awards: Fellow and Distinguished Lecturer, Institute of Electrical and Electronics Engineers; Søren Buus Outstanding Research Award, College of Engineering

SELECTED PUBLICATIONS M. Tajdini, B. Gonzalez-Valdes, J.A. Martinez-Lorenzo, A. Morgenthaler, C. Rappaport Real-Time Modeling of Forward-Looking Synthetic Aperture Ground Penetrating Radar Scattering From Rough Terrain, IEEE Transactions on Geoscience and Remote Sensing, 57(5), 2019, 2754-2765 Y. Fuse, B. Gonzalez-Valdes, J.A. Martinez-Lorenzo, C. Rappaport Model-Based Clutter Reduction Method for Forward Looking Ground Penetrating Radar Imaging Ground Penetrating Radar, 1(2), 2018, 96-112 C. Rappaport, B. Gonzalez-Valdes Multistatic Nearfield Imaging Radar for Portal Security Systems Using a High Gain Toroidal Reflector Antenna, European Conference on Antennas and Propagation (EuCAP), Lisbon, Portugal, 2015, *best paper award

SELECTED RESEARCH PROJECTS Awareness and Localization of Explosive-Related Threats (ALERT) Co-Principal Investigator, Department of Homeland Security Improved Millimeter Wave Radar AIT Characterization of Concealed Low-Contrast Body-Bourne Threats Principal Investigator, Department of Homeland Security


Faculty

Sara Rouhanifard

Assistant Professor, Bioengineering

PhD, Albert Einstein College of Medicine, 2014 coe.northeastern.edu/people/ rouhanifard-sara

Jeffrey Ruberti Professor, Bioengineering

PhD, Tulane University, 1998 coe.northeastern.edu/people/rubertijeffrey

Scholarship focus: developing chemical approaches to track, quantify and model the behaviors of RNA processing events and modifications in single cells. Understanding DNA: protein interactions that drive differences in RNA expression

Scholarship focus: tissue engineering of load-bearing matrix (bone, cornea); bioreactor design; multi-scale mechanobiochemistry; statistical mechanics; energetics microscopy; high-resolution imaging; biopolymer selfassembly

Honors and awards: Ruth S. Kirschstein F32 National Research Service Award

Honors and awards: Søren Buus Outstanding Research Award, College of Engineering

SELECTED PUBLICATIONS

SELECTED PUBLICATIONS

S.H. Rouhanifard, I.A. Mellis, M. Dunagin, S. Bayatpour, C.L. Jiang, I. Dardani, O. Symmons, B. Emert, E. Torre, A. Cote, A. Sullivan, J.A. Stamatoyannopoulos, A. Raj ClampFISH Detects Individual Nucleic Acid Molecules Using Click Chemistry–Based Amplification, Nature Biotechnology, 37(1), 2019, 84-89 S.H. Rouhanifard, A.L. Aguilar, L. Meng, K.W. Moremen, P. Wu Engineered Glycocalyx Regulates Stem Cell Proliferation in Murine Crypt Organoids, Cell Chemical Biology, 25(4), 2018, 439-446 C.N. Casson, J.L. Doerner, A.M. Copenhaver, J. Ramirez, A.M. Holmgren, M.A. Boyer, I.J. Siddarthan, S.H. Rouhanifard, A. Raj, S. Shin Neutrophils and Ly6Chi Monocytes Collaborate in Generating an Optimal Cytokine Response that Protects Against Pulmonary Legionella Pneumophila Infection, PLOS Pathogens, 13(4), 2017 I.A. Mellis, R. Gupte, A. Raj, S.H. Rouhanifard Visualizing Adenosine to Inosine RNA Editing in Single Mammalian Cells, Nature Methods, 8, 2017, 801-804 S.H. Rouhanifard, A. Lopez-Aguilar, P. Wu CHoMP: A Chemoenzymatic Histology Method Using ‘Clickable’ Probes, ChemBioChem, 15(18), 2014, 2667-2673

H. Hosseini, A. Rangchian, M.L. Prins, C.L. Giza, J.W. Ruberti, H.P. Kavehpour Probing Flow-Induced Biomolecular Interactions with Micro-Extensional Rheology: Tau Protein Aggregation, J. Biomech Eng., 142(3), 2020 M. Chaudhary, E.N. Ismail, P. Yao, F. Tayyari, R.A. Radu, S. Nusinowitz, M.E. Boulton, R.S. Apte, J.W. Ruberti, J.T. Handa, P. Tontonoz, G. Malek LXRs Regulate Features of Age-Related Macular Degeneration and May be a Potential Therapeutic Target, JCI Insight, 5(1), 2020 J.A. Paten, C.L. Martin, J.T. Wanis, S.M. Siadat, A.M. Figueroa-Navado, J.W. Ruberti, L.F. Deravi Molecular Interactions Between Collagen and Fibronectin: A Reciprocal Relationship that Regulates De Novo Fibrillogenesis, Chem, 5, 2019, 2126-2145 B. Wingender, P. Bradley, N. Saxena, J.W. Ruberti, L. Gower Biomimetic Organization of Collagen Matrices to Template Bone-Like Microstructures, Matrix Biology, 52-54, 2016, 384-396 M. Susilo, J. Paten, E. Sander, T.D. Nguyen, J.W. Ruberti Collagen Network Strengthening Following Cyclic Tensile Loading, Interface Focus, 6(1), 2016 J.A. Paten, S. Siadat, M.E. Susilo, I.N. Ebraheim, J.L. Stoner, J.P. Rothstein, J.W. Ruberti Flow-Induced Crystallization of Collagen: A Potentially Critical Mechanism in Early Tissue Formation, ACS Nano, 10(5), 2016, 5027-5040

SELECTED RESEARCH PROJECTS Biomimetic Bone: From Nano to Micro Principal Investigator, National Science Foundation Mechanobiology of Matrix Production Principal Investigator, National Institutes of Health

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Faculty

Bahram Shafai Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, George Washington University, 1985 coe.northeastern.edu/people/shafaibahram Scholarship focus: control systems and signal processing; robust and optimal control, positive dynamic systems, fault detection, observer theory, robotics and distributed control of multi-agent systems, control of biological systems Honors and awards: Associate Editor, Systems Man and Cybernetics; Member of Program Committee IEEE CCTA 2020, Senior Life Member, Institute of Electrical and Electronics Engineers, Lifetime Achievement Award from World Automation Congress, Certificate of Appreciation for Technical Seminar Institute of Electrical and Electronics Engineers, Young Professionals

SELECTED PUBLICATIONS B. Shafai, S. Nazari, A. Moradmand A Direct Algebraic Approach to Design State Feedback and Observers for Singular Systems, Proceedings of 2019 IEEE Conference on Control Technology and Applications (CCTA), Hong Kong, China, 2019, 835-842 S. Nazari, B. Shafai Distributed Unknown Input Observers for Fault Detection and Isolation, Proceedings of 2019 IEEE 15th International Conference on Control and Automation (ICCA), Edinburgh, United Kingdom, 2019, 319-324 B. Shafai, A. Moradmand, S. Nazari Observer-based Controller Design for Systems with Derivative Inputs, Proceedings of 2019 57th Annual Allerton Conference on Communication, Control, and Computing, IL, 2019, 1038-1044 S. Nazari, B. Shafai, A. Moradmand Robust Intrusion Detection in Dynamic Networks, Proceedings of 2019 IEEE Conference on Control Technology and Applications (CCTA), Hong Kong, China, 2019, 988-993 S. Nazari, B. Shafai Robust Fault Detection & Isolation in Distributed Dynamic Systems, Proceedings of 2019 6th International Conference on Control, Decision and Information Technologies (CoDIT), Paris, France, 2019, 1941-1946 B. Shafai, M. Naghnaeian, J. Chen Stability Radius Formulation of Lσ-Gain in Positive Stabilization of Regular and Time-Delay Systems, IET Journal of Control Theory and Applications, 2019, 2327-2335

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Sandra Shefelbine Professor, Mechanical and Industrial Engineering; joint faculty, Bioengineering

PhD, Stanford University, 2002 coe.northeastern.edu/people/ shefelbine-sandra Scholarship focus: multi-scale bone biomechanics–how the structure and composition of bone influences its mechanical properties; mechano-adaptation of bone and joint– how tissue responds to mechanical signals

SELECTED PUBLICATIONS B.K. Connizzo, J.M. Piet, S.J. Shefelbine, A.J. Grodzinsky Age-Associated Changes in the Response of Tendon Explants to Stress Deprivation is Sex-Dependent, Connective Tissue Research, 61(1), 2020, 48-6 R.P. Main, S.J. Shefelbine, L.B. Meakin, M.J. Silva, M.C.H van der Meulen, B.M. Willie Murine Axial Compression Tibial Loading Model to Study Bone Mechanobiology: Implementing the Model and Reporting Results, Journal of Orthopaedic Research, 38, 2020, 233–252 B. Depalle, C.M. McGilvery, S. Nobakhti, N. Aldegaither, S.J. Shefelbine, A.E. Porter Osteopontin Regulates Type I Collagen Fibril Formation In Bone Tissue, Acta Biomaterialia, 2020 S.M. Sadeghian, C.L. Lewis, S.J. Shefelbine Predicting Growth Plate Orientation with Altered Hip Loading: Potential Cause of Cam Morphology, Biomech Model Mechanobiol, 19(2), 2020, 701-712 V. Kondiboyina, L.B. Raine, A.F. Kramer, N.A. Khan, C.H. Hillman, S.J. Shefelbine Skeletal Effects of Nine Months of Physical Activity in Obese and Healthy-Weight Children, Medicine and Science in Sports and Exercise, 52(2), 2020, 434-440 A.E. Draghici, J.A. Taylor, M.L. Bouxsein, S.J. Shefelbine Effects of FES-Rowing Exercise on the Time-Dependent Changes in Bone Microarchitecture After Spinal Cord Injury: A Cross-Sectional Inves-tigation, JBMR Plus, 3(9), 2019, e10200 J. Piet, D. Hu, Q. Meslier, R. Baron, S.J. Shefelbine Increased Cellular Presence After Sciatic Neurectomy Improves the Bone Mechano-adaptive Response in Aged Mice, Calcified Tissue International, 105(3), 2019, 316–330

SELECTED RESEARCH PROJECTS Manipulating Fluid Flow in Mechanoadaptation of Bone Principal Investigator, National Science Foundation Mechanobiology of Joint Morphogenesis: Manipulating Salamander Limbs Principal Investigator, National Science Foundation


Faculty

Nikolai Slavov

Eduardo Sontag University Distinguished Professor, Electrical and Computer Engineering; jointly appointed, Bioengineering

Assistant Professor, Bioengineering; affiliated faculty, Biology

PhD, Princeton University, 2010 coe.northeastern.edu/people/slavovnikolai Scholarship focus: single-cell proteomics, Ribosome-mediated translational regulation, quantitative systems biology Honors and awards: Allen Distinguished Investigator Award; NIH Director’s New Innovator Award, National Institutes of Health; Broad Institute SPARC; IRCSET Postgraduate Research Fellowship; Eureka Fellowship for Academic Excellence

SELECTED PUBLICATIONS N. Slavov Unpicking the Proteome in Single Cells, Science, 367(6477), 2020, 512-513 E. Emmott, M. Jovanovic, N. Slavov Ribosome Stoichiometry: From Form to Function, Trends in Biochemical Sciences, 44(2), 2019, 95-109 R. Gary Huffman, A. Chen, H. Specht, N. Slavov DO-MS: Data-Driven Optimization of Mass Spectrometry Methods, Journal of Proteome Research, 18(6), 2019, 2493-2500 B. Budnik, E. Levy, G. Harmange, N. Slavov SCoPE-MS: Mass Spectrometry of Single Mammalian Cells Quantifies Proteome Heterogeneity During Cell Differentiation, Genome Biology, 19, 2018, 161 H. Specht, N. Slavov Transformative Opportunities for Single Cell Proteomics, Journal of Proteome Research, 17(8), 2018, 2565-2571 E. Levy, N. Slavov Single Cell Protein Analysis for Systems Biology, Essays in Biochemistry, 2018, EBC20180014 A. Franks, E. Airoldi, N. Slavov Post-transcriptional Regulation Across Human Tissues, PLoS Computational Biology, 13(5), 2017, e100553 N. Slavov, S. Semrau, E. Airoldi, B. Budnik, A. Van Oudenaarden Differential Stoichiometry Among Core Ribosomal Proteins, Cell Reports, 13(5), 2015, 865-873

SELECTED RESEARCH PROJECTS Ribosome-Mediated Translational Regulation During Stem Cell Differentiation Principal Investigator, National Institutes of Health Tracking Proteome Dynamics In Single Cells Principal Investigator, Allen Distinguished Investigator Award

PhD, University of Florida, 1977 coe.northeastern.edu/people/sontageduardo

Scholarship focus: feedback control theory, systems biology, cancer, and biomedicine

Honors and awards: IEEE Control Systems Field Award; IFAC Fellow; AMS Fellow; SIAM Fellow; IEEE Fellow; Reid Prize in Applied Mathematics, SIAM; Bode Prize, IEEE

SELECTED PUBLICATIONS A.P. Tran, M. Ali Al-Radhawi, I. Kareva, J. Wu, D.J. Waxman, E.D. Sontag Delicate Balances in Cancer Chemotherapy: Modeling Immune Recruitment and Emergence of Systemic Drug Resistance, Frontiers in Immunology, 12(12), 2020,874891 J. Greene, C. Sanchez-Tapia, E.D. Sontag Mathematical Details on a Cancer Resistance Model, Frontiers in Bioengineering and Biotechnology, 2020 J.M. Greene, J.L. Gevertz, E.D. Sontag A Mathematical Approach to Distinguish Spontaneous from Induced Evolution of Drug Resistance during Cancer Treatment, JCO Clinical Cancer Informatics, 3, 2019, 1-20 D.K. Agrawal, R. Marshall, V. Noireaux, E.D. Sontag In Vitro Implementation of Robust Gene Regulation in a Synthetic Biomolecular Integral Controller, Nature Communications, 10, 2019, 1-12 E.V. Nikolaev, A. Zloza, E.D. Sontag Immunobiochemical Reconstruction of Influenza Lung Infection -Melanoma Skin Cancer Interactions, Frontiers in Immunology, 10, 2019, 4 M.A. Al-Radhawi, D. Del Vecchio, E.D. Sontag Multi-Modality in Gene Regulatory Networks with Slow Gene Binding, PLoS Computational Biology, 15, 2019, e1006784

SELECTED RESEARCH PROJECTS Design Principles of Molecular Computing Using Engineered Enzymes Co-Principal Investigator, National Science Foundation SemiSynBio: Very Large-Scale Genetic Circuit Design Automation Principal Investigator, Seminconductor Research Corporation Theory-Based Engineering of Biomolecular Circuits in Living Cells Co-Principal Investigator, Air Force Office of Scientific Research

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Faculty

Bryan Spring Assistant Professor, Physics; Affiliated Faculty, Bioengineering

PhD, University of Illinois 2008 coe.northeastern.edu/people/springbryan Scholarship focus: targeted photomedicine, biophysical microscopy and cancer biology Honors and awards: Smith Family Awards Program for Excellence in Biomedical Research; The National Cancer Institute Transition Career Development Award

SELECTED PUBLICATIONS E.M. Kercher, S. Nath, I. Rizvi, B.Q. Spring Cancer Cell-Targeted and Activatable Photoimmunotherapy Spares T Cells in a 3D Co-Culture Model, Photochemistry and Photobiology, 96(2), 2020, 295–300 N. Davoudzadeh, G. Ducourthial, B.Q. Spring Custom Fabrication and Mode-Locked Operation of a Femtosecond Fiber Laser for Multiphoton Microscopy, Scientific Reports, 9, 2019, 4233 B.Q. Spring, R.B. Sears, L.Z. Zheng, Z.Mai, R. Watanabe, M.E. Sherwood, D.A. Schoenfeld, B.W. Pogue, S.P. Pereira, E. Villa, T. Hasan A Photoactivable Multi-Inhibitor Nanoliposome for Tumour Control and Simultaneous Inhibition of Treatment Escape Pathways, Nature Nanotechnology, 11(4), 2016, 378 B.Q. Spring, A.O. Abu-Yousif, A. Palanisami, I. Rizvi, X. Zheng, Z. Mai, S. Anbil, R.B. Sears, L.B. Mensah, R. Goldschmidt, S.S. Erdem, E. Oliva E, T. Hasan Selective Treatment and Monitoring of Disseminated Cancer Micrometastases in Vivo using Dual-Function, Activatable Immunoconjugates, Proceedings of the National Academy of Sciences of the United States of America, 111(10), 2014, E933–E942

SELECTED RESEARCH PROJECTS

Multiplexed and Dynamically Targeted Photoimmunotherapy of Heterogeneous, Chemo-resistant Micrometastases Guided by Online In Vivo Optical Imaging of Cell-Surface Biomarkers Principal Investigator, National Cancer Institute Peering into Cancer Stem Cell Niches to Guide Suppression of Multiple Signaling Loop Pathways Principal Investigator, Richard and Susan Smith Family Foundation

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Srinivas Sridhar University Distinguished Professor, Physics; affiliated faculty, Bioengineering, Chemical Engineering

PhD, California Institute of Technology, 1984 coe.northeastern.edu/people/sridharsrinivas Scholarship focus: nanomedicine; neurotechnology; drug delivery, MRI imaging Honors and awards: University Distinguished Professorship; Biomedical Engineering Diversity Award 2016

SELECTED PUBLICATIONS D. Zhang, P. Baldwin, A.S. Leal, S. Carapellucci, S. Sridhar, K.T. Liby A Nano-Liposome Formulation of the Parp Inhibitor Talazoparib Enhances Treatment Efficacy and Modulates Immune Cell Populations in Mammary Tumors of BRCADeficient Mice, Theranostics, 9(21), 2019, 6224-6238 J. Qiao, X. Cai, Q. Xiao, Z. Chen, P. Kulkarni, C. Ferris, S. Kamarthi, S. Sridhar Data on MRI brain Lesion Segmentation using K-means and Gaussian Mixture Model-Expectation Maximization, Data Brief, 27, 2019, 104628 P. Baldwin, A.W. Ohman, J.E. Medina, E.T. McCarthy, D.M. Dinulescu, S. Sridhar Nanoformulation of Talazoparib Delays Tumor Progression and Ascites Formation in a Late Stage Cancer Model, Frontiers in Oncology, 9(353), 2019

SELECTED RESEARCH PROJECTS CaNCURE: Cancer Nanomedicine Co-ops for Undergraduate Research Experiences Principal Investigator, National Institutes of Health Nanoformulations and Sustained Delivery of PARP Inhibitors for Breast Cancer Principal Investigator, Department of Defense Nanomedicine Academy of Minority Serving Institutions Principal Investigator, National Science Foundation Development Nanoscale Magnetism of Novel Structures Principal Investigator, Air Force Research Laboratory Neuro-Optical Diagnostic System for Macular Degeneration Principal Investigator, National Institutes of Health Quantitative Non-Invasive Brain Imaging using Magnetic Nanoparticles Principal Investigator, National Institutes of Health


Faculty

Armen Stepanyants Professor, Physics; affiliated faculty, Bioengineering

PhD, University of Rhode Island, 1999 coe.northeastern.edu/people/ stepanyants-armen Scholarship focus: theoretical neuroscience, bioimaging & signal processing, integrated modeling, inference, and computing Honors and awards: NIH/NINDS K25 Mentored Quantitative Career Development Award, Shared first prize at Digital Reconstruction of Axonal and Dendritic Morphology (DIADEM) challenge

SELECTED PUBLICATIONS S.M.M. Kahaki, S.L. Wang, A. Stepanyants Accurate Registration of In Vivo Time-Lapse Images, SPIE Medical Imaging, 10949, 2019, 109491D S.L. Wang, S.M.M. Kahaki, A. Stepanyants Artificial Neural Network Filters for Enhancing 3D Optical Microscopy Images of Neurites, SPIE Medical Imaging, 10949, 2019, 109490G D. Zhang, C. Zhang, A. Stepanyants Robust Associative Learning is Sufficient to Explain the Structural and Dynamical Properties of Local Cortical Circuits, Journal of Neuroscience, 2019, 3218 R. Gala, D. Lebrecht, D.A. Sahlender, A. Jorstad, G. Knott, A. Holtmaat, A. Stepanyants Computer Assisted Detection of Axonal Bouton Structural Plasticity in In Vivo Time-Lapse Images, eLife, 6, 2017, e29315 B.E.P Mizusaki, A. Stepanyants, D.B. Chklovskii, P.J. Sjöström Neocortex: A Lean Mean Memory Storage Machine, Nature Neuroscience, 19(5), 2016, 643-644 J. Chapeton, R. Gala, A. Stepanyants Effects of Homeostatic Constraints on Associative Memory Storage and Synaptic Connectivity of Cortical Circuits, Frontiers in Computational Neuroscience, 9(74), 2015

SELECTED RESEARCH PROJECTS Principles of Robust Learning Derived from the Structure and Function of the Cortical Column Principal Investigator, Air Force Software for Automated Reconstruction of Structure and Dynamics of Neural Circuits Principal Investigator, National Institutes of Health RI Small: Theory of Robust Learning in the Brain Principal Investigator, National Science Foundation

Dagmar Sternad University Distinguished Professor, Biology; jointly appointed: Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, University of Connecticut, 1995 coe.northeastern.edu/people/sternaddagmar Scholarship focus: motor control and learning, variability and stability, humanrobot interaction, dynamic modeling Honors and awards: Faculty of the Year, Award from Residential Life, Klein Lectureship Award; Distinguished Lecturer on Life and the Sciences of Complexity, University of Connecticut

SELECTED PUBLICATIONS S. Bazzi, D. Sternad Human Control of Complex Objects: Towards More Dexterous Robots, Advanced Robotics, 2020, 1-19 M.E. Huber, E. Chiovetto, M.A. Giese, D. Sternad Rigid Foot Soles Improve Balance in Beam Walking but Improvements do not Persist with Bare Feet, Scientific Reports, 10(1), 2020, 7629 J. Hermus, J.A. Doeringer, D. Sternad, N. Hogan Separating Neural Influences from Peripheral Mechanics: The Speed-Curvature Relation in MechanicallyConstrained Actions, Journal of Neurophysiology, 123, 2020, 1870–1885 D. Levac, M.E. Huber, D. Sternad Learning and Transfer of Complex Motor Skills in Virtual Reality: A Perspective Review, Journal of NeuroEngineering and Rehabilitation, 16(1), 2019, 121 W.J. Sohn, R. Sipahi, T.D. Sanger, D. Sternad Portable Motion-Analysis Device for Upper Limb Research, Assessment and Rehabilitation in NonLaboratory Settings, IEEE Journal of Translational Engineering in Health and Medicine, 7, 2019, 1-14

SELECTED RESEARCH PROJECTS Collaborative Research: Learning to Control Dynamically Complex Objects Co-Investigator, National Science Foundation Collaborative Research: Neural Basis of Motor Expertise Principal Investigator, National Institutes of Health Collaborative Research: Towards Robots with Human Dexterity Principal Investigator, National Science Foundation Predictability in Complex Object Control Principal Investigator, National Institutes of Health US-German-Israeli Collaborative Research: Hierarchical Coordination of Complex Actions Principal Investigator, National Science Foundation

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Faculty

Milica Stojanovic Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, Northeastern University, 1993 coe.northeastern.edu/people/ stojanovic-milica Scholarship focus: wireless communications and networks, underwater acoustic transmission, statistical system characterization, adaptive signal processing Honors and awards: Distinguished Technical Achievement Award and Distinguished Lecturer, IEEE Ocean Engineering Society; Fellow, Institute of Electrical and Electronics Engineers

SELECTED PUBLICATIONS R. Ahmed, M. Stojanovic Grouped Packet Coding: A Method for Reliable Communication Over Fading Channels With Long Delays, IEEE Journal of Oceanic Engineering, 99, 2018, 1-11 A. Tadayon, M. Stojanovic Low-Complexity Super-Resolution Frequency Offset Estimation for High Data Rate Acoustic OFDM Systems, IEEE Journal of Oceanic Engineering, 2018, 1-11 R. Ahmed, M. Stojanovic Joint Power and Rate Control for Packet Coding Over Fading Channels, IEEE Journal of Oceanic Engineering, 42(3), 2016, 697-710 Y. Aval, S.K. Wilson, M. Stojanovic Capacity of Acoustic Channels and Practical Power-Allocation Strategies, IEEE Journal of Oceanic Engineering, Special Issue on Underwater Communications, 40(4), 2015, 785-795 Y. Aval, M. Stojanovic Differentially Coherent Multichannel Detection of Acoustic OFDM Signals, IEEE Journal of Oceanic Engineering, 40(2), 2015, 251-268 P. Qarabaqi, M. Stojanovic Statistical Characterization and Computationally Efficient Modeling of a Class of Underwater Acoustic Channels, IEEE Journal of Oceanic Engineering, Special Issue on Underwater Communications, 38(4), 2013, 701-717

SELECTED RESEARCH PROJECTS Active Communication, Sensing and Control in Actuated Underwater Sensing Networks Principal Investigator, Office of Naval Research Development of a Software-Defined Networking Testbed for the Internet of Underwater Things Principal Investigator, National Science Foundation

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Nian Sun

Professor, Electrical and Computer Engineering; affiliated faculty, Bioengineering

PhD, Stanford University, 2002 coe.northeastern.edu/people/sunnian-xiang Scholarship focus: micro/ nanofabricated sensors, including antennas, electrochemical gas sensors, magnetic field sensors, strain and pressure sensors, etc.; magnetic, ferroelectric and magnetoelectric materials; RF/ microwave magnetic and magnetoelectric devices design, fabrication and testing; materials properties at RF/ microwave frequency Honors and awards: Fellow, Institute of Physics; Fellow, Institute of Engineering and Technology; Office of Naval Research Young Investigator Award; National Science Foundation CAREER Award; Søren Buus Outstanding Research Award, College of Engineering

SELECTED PUBLICATIONS Z. Wang, C. Dong, X. Wang, M. Li, T. Nan, X. Liang, H. Chen, Y. Wei, H. Zhou, N.X. Sun Highly Sensitive Integrated Flexible Tactile Sensors with Piezoresistive Ge 2 Sb 2 Te 5 Thin Films, npj Flexible Electronics, (1), 2018, 17 T. Nan, H. Lin, Y. Gao, A. Matyushov, G. Yu, H. Chen, N. Sun, S. Wei, Z. Wang, N.X. Sun Acoustically Actuated Ultra-Compact NEMS Magnetoelectric Antennas, Nature Communications, 8(1), 2017, 296 S. Emori, B.A. Gray, H.M. Jeon, J. Peoples, M. Schmitt, K. Mahalingam, M. Hill, N.X. Sun Coexistence of Low Damping and Strong Magnetoelastic Coupling in Epitaxial Spinel Ferrite Thin Films, Advanced Materials 29(34), 2017, 1701130 Z. Zhou, M. Trassin, Y. Gao, Y. Gao, D. Chen, N.X. Sun Probing Electric Field Control of Magnetism Using Ferromagnetic Resonance, Nature Communications, 6, 2015, 6082

SELECTED RESEARCH PROJECTS Novel Implantable Smart Magnetoelectric NanoRFIDs for Large-Scale Neural Magnetic Recording and Modulation Principal Investigator, National Institutes of Health NSF Nanosystems Engineering Research Center (ERC) for Translational Applications of Nanoscale Multiferroic Systems (TANMS) Co-Principal Investigator, National Science Foundation Engineering Research Centers


Faculty

Eugene Tunik Associate Professor, Physical Therapy, Movement and Rehabilitation Science; affiliated faculty, Bioengineering, Electrical and Computer Engineering

PhD, Rutgers University, 2003 coe.northeastern.edu/people/tunikeugene Scholarship focus: human motor control/learning, neurorehabilitation neuroscience, brain stimulation, brain imaging, virtual reality

SELECTED PUBLICATIONS G. Chen, M. Yarossi, S. Gordon, S. Gomes, A. Rubakhina, S. Adamovich, E. Tunik Concurrent tDCS and Mirror Feedback has Additive Effects on M1 Excitability, Brain Stimulation, 10(4), 2018, e39-e40 M. Yarossi, M. Dannhauer, D. Erdogmus, D. Brooks, E. Tunik Multi-Muscle TMS Mapping Using Subject-Specific FEA Models of Induced Currents, Brain Stimulation, 10(4), 2017, e28 L.F. Schettino, S.V. Adamovich, E. Tunik Coordination of the Pincer Grasp and Transport Following a Haptic Perturbation of the Index Finger, Journal of Neurophysiology, 117(6), 2017, 2292-2297 M. Yarossi, S.V. Adamovich, E. Tunik Facilitation of Ipsilateral Corticospinal Excitability During Mirror Visual Feedback Requires Target Directed Actions, Frontiers Human Neuroscience, 11, 2017, 242 L.F. Schettino, S.V. Adamovich, H. Bagce, M. Yarossi, E. Tunik Disruption of Activity in the Ventral Premotor but not the Anterior Intraparietal Area Interferes with On-Line Correction to a Haptic Perturbation During Grasping, The Journal of Neuroscience, 35(5), 2014, 2112-2117 M. Yarossi, S. Adamovich, E. Tunik Sensorimotor Cortex Reorganization in Subacute and Chronic Stroke: A Neuronavigated TMS Study, Proceedings of the IEEE Engineering in Medicine and Biology Society Annual Conference, 2014, 5788-5791

SELECTED RESEARCH PROJECTS Optimizing Hand Rehabilitation Post-Stroke Using Interactive Virtual Environments Principal Investigator, National Institutes of Health Planning and Updating in Frontoparietal Networks for Grasping Principal Investigator, National Institutes of Health

Meni Wanunu Associate Professor, Physics; affiliated faculty, Bioengineering

PhD, Weizmann Institute, 2005 coe.northeastern.edu/people/wanunumeni Scholarship focus: development of next-generation DNA and RNA sequencing methods; nanopores as molecular sensors; bioinspired sustainability solutions; optical and electrical analysis of biomolecular systems; electron microscopy and electron-beam shaping of nanomaterials

SELECTED PUBLICATIONS P. Tripathi, L. Shuai, H. Joshi, H. Yamazaki, W.H. Fowle, A. Aksimentiev, H. Fenniri H, M. Wanunu Rosette Nanotube Porins as Ion Selective Transporters and Single-Molecule Sensors, Journal of the American Chemical Society, 142, 2020, 1680-1685 X. Kang, M.A. Alibakhshi, M. Wanunu One-Pot Species Release and Nanopore Detection in a Voltage-Stable Lipid Bilayer Platform, Nano Letters 19, 2019, 9145-9153 M. Mojtabavi, A. VahidMohammadi, W. Liang, M. Beidaghi M. Wanunu Single-Molecule Sensing Using Nanopores in TwoDimensional Transition Metal Carbide (MXene) Membranes, ACS Nano, 13, 2019, 3042-3053

SELECTED RESEARCH PROJECTS Direct Picogram DNA and RNA Sequencing Using Nanopore Zero-Mode Principal Investigator, National Institutes of Health Engineering Tunable Portal Hybrid Nanopores for HighResolution Sequence Mapping Principal Investigator, National Science Foundation Nanopores in 2D Materials Principal Investigator, Oxford Nanopore Technology Recognition Tunneling for Single Molecule RNA Sequencing Co-Principal Investigator, National Institutes of Health Two-Dimensional Nanopores with Electro-Optical Control for Next Generation Biotechnological Applications Co-Principal Investigator, National Science Foundation Understanding Transport in Biomimetic Carbon Nanotube Porin Membranes for Water Treatment and Osmotic Energy Harvesting Co-Principal Investigator, National Science Foundation

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Faculty

Paul Whitford Associate Professor, Physics; affiliated faculty, Bioengineering

Professor and Chair, Chemical Engineering; affiliated faculty, Bioengineering

PhD, University of California, 2009 coe.northeastern.edu/people/whitfordpaul

PhD, Cornell University, 1999 coe.northeastern.edu/people/willitsrebecca

Scholarship focus: dynamics of largescale molecular machines, working to identify the physical principles that guide biomolecular dynamics, using molecular simulation approaches to interpret experimental data from a wide range of techniques, including biochemical, small-angle X-ray scattering and cryogenic electron microscopy Honors and awards: National Science Foundation CAREER Award

SELECTED PUBLICATIONS P. Waduge, R. Hu, P. Bandarkar, H. Yamazaki, B. Cressiot, Q. Zhao, P.C. Whitford, M. Wanunu Nanopore-Based Measurements of Protein Size, Fluctuations, and Conformational Changes, ACS Nano, 11, 2017, 5706-5716 M. Levi, K. Nguyen, L. Dukaye, P.C. Whitford Quantifying the Relationship Between Single-Molecule Probes and Subunit Rotation in the Ribosome, Biophysical Journal, 113, 2017, 2777-2786 K. Nguyen, P.C. Whitford Steric Interactions Lead to Collective Head Tilting During mRNA-tRNA Translocation on the Ribosome, Nature Communications, 7, 2016, 10586 J.K. Noel, P.C. Whitford How EF-Tu Can Contribute to Efficient Proofreading of aa-tRNA by the Ribosome, Nature Communications, 7, 2016, 13314 P.C. Whitford Disorder Guides Protein Function, Proceedings of the National Academy of Sciences USA, 110, 2013, 7114-7115

SELECTED RESEARCH PROJECTS Disorder, tRNA Composition and Energy Transduction in the Ribosome Principal Investigator, National Science Foundation Quantifying the Effects of Ions and Collective Rearrangements During Ribosome Function Principal Investigator, National Science Foundation

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Rebecca Kuntz Willits

Scholarship focus: neural regenerative strategies, neural mechanosensing, diversity and inclusion in engineering Honors and awards: Council for Advancement and Support of Education (CASE) Missouri Professor of the Year; AIMBE Fellow

SELECTED PUBLICATIONS C.M.M. Motta, K.J. Endres, C. Wesdemiotis, R.K. Willits, M.L. Becker Enhancing Schwann Cell Migration Using Concentration Gradients of Laminin Derived-Peptides, Biomaterials, 218, 2019, 119335 E.A. Silantyeva, R.K. Willits, M.L. Becker Postfabrication Tethering of Molecular Gradients on Aligned Nanofibers of Functional Poly(ε-caprolactone)s, Biomacromolecules, 20(12), 2019, 4494-4501 D.L. Philip, E.A. Silantyeva, M.L. Becker, R.K. Willits RGD-Functionalized Nanofibers Increase Early GFAP Expression during Neural Differentiation of Mouse Embryonic Stem Cells, Biomacromolecules, 20(3), 2019, 1443-1454 M. Cavanaugh, E. Silantyeva, G. Pylypiv Koh, E. Malekzadeh, W. Lanzinger, R. Willits, M. Becker Rgd-Modified Nanofibers Enhance Functional Outcomes in Rats after Sciatic Nerve Injury, Biomimetic Materials for Regenerative Medicine; Journal of Functional Materials, 10(2), 2019, 24

SELECTED RESEARCH PROJECTS Toward a Mechanotransduction Mimic of the Neural Stem Cell Niche Principal Investigator, National Science Foundation Collaborative Research: Professional Preparation of Underrepresented Minority PhD’s and Post-Docs for a Career in Engineering Academia Co-Principal Investigator, National Science Foundation


Faculty

Mohammad Abbas Yaseen Assistant Professor, Bioengineering

PhD, Rice University, 2008 coe.northeastern.edu/people/syaseenmohammad-abbas Scholarship focus: advanced microscopy for minimally invasive, in vivo characterization of brain function

SELECTED PUBLICATIONS B. Li, R. Ohtomo, M. Thunemann, S.R. Adams, J. Yang, B. Fu, M.A. Yaseen, C. Ran, J.R. Polimeni, D.A. Boas, A. Devor, E.H. Lo, K. Arai, S. Sakadžić Two-photon Microscopic Imaging of Capillary Red Blood Cell Flux in Mouse Brain Reveals Vulnerability of Cerebral White Matter to Hypoperfusion, Journal of Cerebral Blood Flow and Metabolism, 40(3), 2020, 501-512 B. Li, T.V. Esipova, I. Sencan, K. Kilic, B.Y. Fu, M. Desjardins, M. Moeini, S. Kura, M.A. Yaseen, F. Lesage, L. Ostergaard, A. Devor, D.A. Boas, S.A. Vinogradov, S. Sakadžić More Homogeneous Capillary Flow and Oxygenation in Deeper Cortical Layers Correlate with Increased Oxygen Extraction, ELife, 8, 2019, e42299 C.A. Gomez, S. Sakadzic, J. Sutin, W. Wu, B. Fu, D.A. Boas, M.A. Yaseen Phasor Analysis of NADH HIM Identifies Pharmacological Disruptions to Mitochondrial Metabolic Processes in the Rodent Cerebral Cortex, PLoS One, 13(3), 2018, e0194578

SELECTED RESEARCH PROJECTS Relating Neuroimmune and Neurovascular Alterations during Alzheimer’s Disease Progression Principal Investigator, National Institute of Health

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Selected PhD Theses

Paige Baldwin

Jeff Bouffard

PhD 2019, Bioengineering; Advisor, Srinivas Sridhar

PhD 2019, Bioengineering; Advisor, Erin Cram

Development of Molecular Inhibitor Nanoformulations for Cancer Therapy

Development of a Lab Bioimage Informatics System for Fluorescence Microscopy Data, With Application to Experimental Studies of Rhogap Regulation of Calcium Signaling and Actomyosin Contractility

Molecular inhibitors rely on tumor biology for precision cancer therapy and provide novel therapeutic options for patients. These drugs tend to be advantageous in combination with other therapeutics. However, combination therapy has been plagued by off target toxicity, requiring dose reduction or delay. In addition, the complexity of cancer has resulted in either intrinsic or acquired resistance to these compounds. Nanoparticles have been widely studied as drug delivery systems due to their inherent ability to reduce toxicity while maintaining therapeutic efficacy. It was hypothesized that the formulation of molecular inhibitors in nanoparticle delivery systems could reduce toxicity and enhance efficacy, leading to more effective combination therapy. A nanoformulation of the PARP inhibitor Talazoparib (TLZ) was optimized for intravenous therapy. This formulation was more versatile than the FDA-approved oral drug and allowed for delivery to the peritoneal cavity for local treatment of disseminated ovarian cancer, leading to a decrease in the number of animals developing tumor associated ascites. See full dissertation at coe.northeastern.edu/19/PaigeBaldwin

Microscopic imaging is a powerful tool to advance our understanding of biological systems. Image-based biological investigations can be large and complex, requiring bioimage informatics solutions to manage and examine large amounts of information. This dissertation describes the development of a lab bioimage informatics system to organize and analyze fluorescence microscopy movies. This system is applied here to investigate the regulation of calcium signaling and actomyosin contractility in the C. elegans spermatheca, a multicellular contractile tube with stereotyped tissue function and conserved genes and regulatory networks. The lab bioimage informatics system standardizes the organization, processing, and analysis of calcium sensor movies by using computer programs to automate processes. The motivations, design goals, and implementation for this lab bioimage informatics system are presented. The experimental investigation revealed a new role for a RhoGAP known to regulate actomyosin contractility. For this work, the lab bioimage informatics system supported analysis of almost 500 fluorescence microscopy movies, acquired by 4 different people over 4 years. These data show that the RhoGAP SPV-1 is a key regulator of calcium signaling and tissue function in the C. elegans spermatheca. Experiments to establish mechanism suggest SPV-1 coordinates the activity of multiple GTPases to control tissue contractility. See full dissertation at coe.northeastern.edu/19/JeffBouffard

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Selected PhD Theses

Solomon Mensah PhD 2019, Bioengineering; Advisor, Eno Ebong

Endothelial Glycocalyx-mediated Intercellular Interactions : Mechanisms and Implications for Health And Disease The endothelial glycocalyx (GCX) plays a critical role in the health of the vascular system. Degradation of the GCX has been implicated in the onset of diseases like atherosclerosis and cancer because it disrupts endothelial cell (EC) function that is meant to protect from atherosclerosis and cancer. Intercellular interactions are physiologically relevant activities that ensure proper EC function. Various intercellular interactions including those mediated by gap junction proteins, like connexin, for maintaining cell to cell communication, and adhesion molecules, like those mediated by E-selectin and integrins for regulating cell to cell contact between ECs and leukocytes, cancer cells, or other circulating cells. To-date, limited progress has been made to best understand the role of the GCX in intercellular interactions. Previous work demonstrated that GCX degradation disrupts EC gap junction connexin (Cx) proteins, likely blocking interendothelial communication that maintains EC and vascular tissue homeostasis to resist disease. Other reports suggest that the ability of immune cells to interact with EC could be a model for the way cancer cells interact with EC, and these interactions are modulated by the GCX. We hypothesize that the GCX controls the opening and closing of Cx containing gap junction proteins for regulating communication and also controls accessibility to receptors on the surface of the endothelium for regulating intercellular interactions. See full dissertation at coe.northeastern.edu/19/SolomonMensah

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DEPARTMENT OF BIOENGINEERING Northeastern University 206 Interdisciplinary Science and Engineering Complex 805 Columbus Avenue Boston, MA 02118 P 617.373.7805

bioe.northeastern.edu coe.northeastern.edu

COVER IMAGE Graduate student Suzanne Stasiak, working in Bioengineering Assistant Professor Hari Parameswaran’s lab, is exploring how smooth muscle cells sense the concentration of contractile stimulus, which can trigger asthma attacks, to gain a better understanding of why asthmatics can still be at risk for an asthma attack even when there is no inflammation in their airways and the patient is symptom free. The research team’s findings, recently published in Science Advances, Advances, indicate that asthma attacks may be the result of when the body incorrectly senses the concentration or dose of inhaled agonists.


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