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CrossLink 2021 - Global Health Cover Article

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GLOBAL HEALTH

Biomedical Engineering Solutions with Global Impact BY DIANE CHOATE

Addressing global health involves taking into consideration varied geographics, demographics, cultures, economic disparities, and even politics. Because engineers are driven to look at all kinds of solutions to a problem, they are always involved in finding answers to global health issues.

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GLOBAL HEALTH

ADVANCING GLOBAL HEALTH THROUGH ENGINEERING UF biomedical engineering researchers are working to find more solutions for testing, treatment, cures and/or prevention in a variety of areas. >>> HIV/AIDS:

Engineering research into HIV/AIDS continues today. Ivana Parker, Ph.D., ASSISTANT PROFESSOR assistant professor at UF Biomedical Engineering (BME), has been studying Trained immunity, HIV prevention, proteomics and systems biology HIV/AIDS and its co-morbidities since her graduate school days. During her Ph.D. work, she began studying cardiovascular disease associated with the long-term use of anti-retroviral drugs used to treat HIV patients. During a trip to Ethiopia to quantify HIV-related co-morbidities in sub-Saharan Africa, where there is less access to newer combinations of therapy, she determined that the use of first-line therapies led to increased co-morbidities, especially in women and children. IVANA PARKER, PH.D.

As part of a Fulbright scholarship, she worked in southern Africa, studying the risk of a commonly used TB vaccine, BCG, on HIV transmission from mothers to infants. Using her engineering knowledge, she developed a platform using cultured macrophages to discover protein markers that were important in understanding the inflammatory responses to BCG and their role in HIV transmission. Employing computational analyses and systems biology approaches, Parker aims to predict which patients would be more at risk. Parker’s research deals with developing models that can be used to understand and predict inflammation related to HIV risk without having to repeatedly do large patient cohort studies. “I hope to incorporate AI and machine learning techniques in the future. The university’s AI Initiative was a major factor in my decision to join the BME faculty at UF,” Parker said. Parker is also currently working to better understand the nuances in vaginal health and bacterial vaginosis, a condition that is not well-defined or well-treated globally. Her aim is to establish a healthy vaginal biome to reduce the spread of HIV. 10 | CROSSLINK MAGAZINE

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If we can determine risk factors and come up with therapies that prevent disease rather than having to treat it, we can ease the cost burden. This is where we can impact global health. - Ivana Parker

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eneration X (those born between the 1960s and 1980s) may recall HIV/AIDS as the most prominent threat to the health of the world’s populace. Since the beginning of the epidemic, the World Health Organization (WHO) has recorded almost 80 million people infected with the HIV virus, and about 37 million people have died of AIDS. Globally, 37.7 million people were living with HIV at the end of 2020.

>>> ALZHEIMER’S DISEASE AND DEMENTIA:

RUOGU FANG, PH.D. ASSISTANT PROFESSOR

The World Health Organization estimates that, worldwide, around 50 million people have dementia; and there are nearly 10 million new cases every year. This number is expected to triple by 2050 as our global population ages. Alzheimer’s disease is the most common form of dementia and may contribute to 60–70% of cases. The cost, due to loss of productivity and the need for constant caregivers, runs into the billions of dollars.

Big data analytics, brain informatics, medical image analysis

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ME assistant professor Ruogu Fang, Ph.D., through her Smart Medical Informatics Learning & Evaluation (SMILE) lab, is working to integrate AI as an engineering tool to find solutions for Alzheimer’s and related dementias. She and her colleagues are researching two approaches – (1) early and pervasive diagnosis and (2) effective intervention at an early stage. For (1), retinal imaging device is much cheaper ($6K vs. $1-4M) compared to conventional imaging diagnostic scanners (MRI, PET). Thus the cost of each test will also be much more accessible globally. For (2), transcranial direct current stimulation (tDCS) is a light-weight, affordable, non-invasive brain stimulation method that has the potential to be administered at home or community hospitals. The retina of the eye has the same origin as brain cells, thus allowing insight into what is happening in the brain through studying this tissue before overt symptoms of neuronal disease become apparent. Using a book-sized retinal camera that can be carried easily, Fang’s technology will allow healthcare workers to gather retinal images anywhere. Artificial intelligence (AI) can then be implemented to analyze and classify patients with Alzheimer’s years before the disease has progressed to overt symptoms. Even with early diagnosis, there is no cure for Alzheimer’s and related dementias yet. Fang is working with Adam Woods, Ph.D., and his colleagues at the UF College of Public Health & Health Professions to integrate AI and transcranial direct current stimulation (tDCS), paired with cognitive training, to tailor precision therapy for the individual that can prevent further cognitive decline. “Educating and mentoring students in the multidisciplinary fields of medicine and engineering is how we will open up the future for improvements in global health and welfare,” Fang said.

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GLOBAL HEALTH

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Our goal is to translate biomaterials-based immunotherapies to the clinic to globally impact the pandemic of autoimmunity.

- Jamal Lewis

BME assistant professor Jennifer Nichols, Ph.D., is working on the goal of creating predictive, biomechanical simulations to improve the functional ability and quality of life for individuals with musculoskeletal disorders, including osteoarthritis. Nichols creates computer models that replicate how the musculoskeletal system responds to pathologies and treatments. “If we can predict the most efficacious treatments, we can adjust and improve therapies for OA,” Nichols said. Her long-range goal is to develop tailored models from limited data that are patient-specific. While therapy and surgery are well advanced in high-income countries, options in lower/middle-income countries are more limited. The models developed by Nichols will be open-sourced so that clinicians around the world can use them.

Lewis’ research focuses on trying to suppress the autoimmune attack, with the aim of eventually developing a regulatory vaccine that could be given to at-risk people before they develop full-blown RA. Drawing on his experience in biomaterials engineering, Lewis will be using vaccine-loaded microparticles to suppress inflammation and prevent the loss of collagen in a patient’s joints and bones. He hopes that success in this arena could lead to a platform for developing a broad-spectrum vaccine for all types of autoimmune diseases.

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In this era of artificial intelligence and machine learning, with the ability to get data from groups everywhere, we can harness that data to design solutions that work for everybody regardless of cultural backgrounds and geographical locations.

On a larger scale, Lewis has begun studying vomocytosis, the process by which some fungal cells can be ingested by immune cells without being harmed and can then be expelled from the immune cells in areas like the brain and lymph nodes. By studying the activity of these fungal cells, Lewis aims to adapt the process to inanimate microparticles as a form of site-specific drug delivery. Such a development could help people everywhere with many types of diseases.

JAMAL LEWIS, PH.D. ASSOCIATE PROFESSOR

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steoarthritis, a condition brought about by common wear and tear on joints, affects more than 240 million people worldwide, according to the Osteoarthritis Research Society International (OARSI). JENNIFER NICHOLS, PH.D. ASSISTANT PROFESSOR In a report to the FDA, they stated that osteoarthritis, with Biomechanics, musculoskeletal modeling, predictive simulation, a 75% increase in Years Lived medical imaging with Disease (YLD), ranked as the third most rapidly rising condition associated with disability (just behind diabetes with a 135% increase and dementia with an 84% increase). The personal and societal costs of osteoarthritis are significant and ever-increasing with an aging population.

Biomaterials, drug delivery, immunoengineering

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amal Lewis, Ph.D., associate professor in BME (starting Summer 2022), who worked with Benjamin Keselowsky, Ph.D., BME professor and associate chair for graduate studies, on the development of a vaccine that could be used to train a diabetic’s immune system not to attack its beta cells, has expanded his research into the field of rheumatoid arthritis (RA). World Health Organization data estimated that more than 23 million people globally lived with RA in 2014. This condition is an autoimmune form of arthritis in which the body’s immune system attacks its own joints and connective tissue, causing inflammation, swelling, and joint damage. The prevalence of RA by 2030 may be over 65 million as the baby boomer population in the US ages and RA is increasingly diagnosed in underdeveloped countries.

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>>> RHEUMATOID ARTHRITIS:

>>> OSTEOARTHRITIS:

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GLOBAL HEALTH >>> GLOBAL IMPACTS OF THE GUT MICROBIOME ON HEALTH:

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ssistant professor Ana Maria Porras, Ph.D., who joined BME this fall, is tackling global health conditions that impact many health issues. “The gut microbiome within the body is widely varied, depending on what part of the world you live in,” Porras said. “Currently, we don’t know if microbiome-based treatments developed in the United States will work efficaciously for populations elsewhere in the world due to these differences, which are not well understood.”

>>> STUDENT ENGAGEMENT IN GLOBAL HEALTH:

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nstructional assistant professor Eric Fuller, Ph.D., is the main instructor of the Senior Student Design Project in the Department of Biomedical Engineering. He incorporates aspects of global health needs into the 16 projects he provides to senior BME students for this capstone class each year.

Porras’ approach involves creating in vitro models of tissues like the gut and subjecting these customized biomaterials to well-known and emerging pathogens to study human-microbe interactions. Her aim is to understand how and why these different biomes react in different ways to health threats.

Dr. Eric Fuller is the program director for the Summer 2022 engineering internship abroad program that is organized by the Herbert Wertheim College of Engineering to increase student engagement in international experiences through a unique study tour and internship program for engineers, including chemical engineers and biomedical engineers. The program provides a unique opportunity to learn about Brazilian history, culture and technology while completing an engineering internship at a company in São Paulo. Students will have the opportunity to learn and develop their professional and intercultural competencies in a global environment.

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Engineers are in the business of solving problems. If we want the solutions we engineer to serve the world, we need to be inclusive. We must understand the world if we are going to reach everyone everywhere to improve health globally. - Ana Maria Porras

UF IN BRAZIL: GLOBAL ENGINEERING EDUCATION

Students choose one of the projects to work on: for example, a more comfortable prosthetic liner for amputees to encourage continued use of the prosthetic. Other projects from the past year involved designing inexpensive3-D bioprinters to produce novel surgical products and re-engineering common pool floats for unique aquatic physical therapy exercises. While discussing engineering approaches with the students, Fuller emphasizes employing “frugal engineering” that asks the students to consider using inexpensive and readily available materials in their solutions. Making economically feasible products is as important as any other aspect of the design and has a vital global impact.

This program will take place in São Paulo and Rio de Janeiro to leverage Brazil’s strong position in chemical, petrochemical, and biochemical industries. Working as an intern enables students to connect theory with practice and apply the engineering and scientific principles learned in the classroom to a real-world professional environment. Completing an internship abroad is an invaluable opportunity to learn about local business and engineering practices and customs, hone personal and professional skills and habits and broaden perspectives.

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In the future, Fuller’s aspiration is to incorporate project partners from lower/middle income countries so that students can have closer interaction with global needs and see firsthand the global impact their designs can have.

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ASSISTANT PROFESSOR

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Biomaterials & tissue engineering to study host-microbe interactions and inclusive science communication

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ANA MARIA PORRAS, PH.D.

Frugal innovation is critical for global health, and our student engineers are well trained and poised to make this happen. - Eric Fuller

ERIC FULLER, PH.D. INSTRUCTIONAL ASSISTANT PROFESSOR Engineering design and engineering education

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