Faculty

Edward Sander

PhD
Professor of Biomedical Engineering
University of Iowa

Ed Sander is a Professor in the Roy J. Carver Department of Biomedical Engineering at the University of Iowa, with secondary appointments in Chemical and Biochemical Engineering and Orthopedic and Rehabilitation Therapy. He obtained his B.S. in Chemical Engineering from the University of Texas at Austin and his Ph.D. in Biomedical Engineering from Tulane University. He was also a visiting research associate in the Department of Mechanical Engineering at Purdue University, an NIH NRSA postdoctoral fellow in the Department of Biomedical Engineering at the University of Minnesota, and a research associate at the Cincinnati Shriners Hospital for Children and the Department of Surgery at the University of Cincinnati. Dr. Sander’s research interests are broad, span multiple disciplines, and include both computational and experimental work. His primary focus is on the role of mechanobiological processes in wound healing, fibrosis, and scar formation. He has secured multiple federal and private foundation grants including an NSF CAREER award. He is the Director of Graduate studies and was the Director of the NSF REU on Computational Bioengineering. He is a fellow of the American Society of Mechanical Engineers and the American Institute of Medical and Biological Engineers. He is the editor-in-chief of the Biomedical Engineering Society journal Cellular and Molecular Bioengineering.

2027 Sessions

WHS Session C: Tissue Engineering and Regenerative Medicine

Moderator (WHS)

Presenter (WHS)

Wednesday, April 28 10:30–11:30 AM
Faculty

Swathi Balaji

PhD
Assistant Professor
Baylor College of Medicine and Texas Children's Hospital

Dr. Swathi Balaji is currently an Assistant Professor in the Department of Surgery at Baylor College of Medicine and Texas Children’s Hospital (BCM/TCH) in Houston, Texas. The research in her laboratory focuses on understanding the sequelae of fibrosis in response to dermal injuries in postnatal patients, with a particular emphasis on understanding 1) how individuals from broad patient demographics respond to similar injuries with significantly “heterogeneous” scarring patterns that lead to a spectrum of postnatal fibrotic outcomes, and 2) why scars persist once formed. She is currently studying the fibroblast energy metabolism and inter cellular signaling mechanisms that communicate and regulate the fibrogenic phenotype mediated via the secretion of extracellular vesicles also known as exosomes. Prior to joining BCM/TCH in 2015, Dr. Balaji received her Ph.D. in Biomedical Engineering in 2010 from the University of Cincinnati, where she first gained interest in wound healing and tissue regeneration when she had the opportunity to work with Professors Daria Narmoneva, Ph.D. at the University of Cincinnati and Timothy Crombleholme, M.D. at Cincinnati Children’s Hospital Medical Center. She then worked as a Postdoctoral Fellow in Dr. Sundeep Keswani’s Laboratory at Cincinnati Children’s Hospital Medical Center, where she studied the scarless wound healing mechanisms of the fetal regenerative responses.

Faculty

Simon Matoori

Prof. Dr.
Assistant Professor
Université de Montréal

Simon Matoori is an assistant professor at the Faculty of Pharmacy at Université de Montréal in Québec, Canada. His bioengineering laboratory develops new wound dressings for molecular diagnostics at the point-of-care in diabetic foot ulcers.

Faculty

Edward Sander

PhD
Professor of Biomedical Engineering
University of Iowa

Ed Sander is a Professor in the Roy J. Carver Department of Biomedical Engineering at the University of Iowa, with secondary appointments in Chemical and Biochemical Engineering and Orthopedic and Rehabilitation Therapy. He obtained his B.S. in Chemical Engineering from the University of Texas at Austin and his Ph.D. in Biomedical Engineering from Tulane University. He was also a visiting research associate in the Department of Mechanical Engineering at Purdue University, an NIH NRSA postdoctoral fellow in the Department of Biomedical Engineering at the University of Minnesota, and a research associate at the Cincinnati Shriners Hospital for Children and the Department of Surgery at the University of Cincinnati. Dr. Sander’s research interests are broad, span multiple disciplines, and include both computational and experimental work. His primary focus is on the role of mechanobiological processes in wound healing, fibrosis, and scar formation. He has secured multiple federal and private foundation grants including an NSF CAREER award. He is the Director of Graduate studies and was the Director of the NSF REU on Computational Bioengineering. He is a fellow of the American Society of Mechanical Engineers and the American Institute of Medical and Biological Engineers. He is the editor-in-chief of the Biomedical Engineering Society journal Cellular and Molecular Bioengineering.

Faculty

Kara Spiller

PhD
Professor
Drexel University

Dr. Kara Spiller is a Professor in Drexel University's School of Biomedical Engineering, Science, and Health Systems. Her research interests include the role of immune cells in tissue regeneration, the design of immunomodulatory biomaterials, and international engineering education. Her research is funded by the NIH, the NSF, and private foundations. Her awards include a Fulbright fellowship, the NSF CAREER award, and the United States nomination for the ASPIRE prize.

Faculty

Helena Zomer

DVM, PhD
Assistant Professor
University of Florida

Dr. Helena Zomer's research focus is on regenerative medicine approaches to improve skin wound healing and regeneration. Dr. Zomer's training as a veterinary doctor and molecular, developmental, and cell biologist gives her a singular set of skills and a unique research perspective. As a veterinarian scientist, Dr. Zomer follows the One Health concept, so that her research programs aim to benefit both human and animal health. Dr. Zomer's current work aims to understand the mechanisms and develop new therapeutics leading to robust skin wound healing using a novel acellular approach based on physiologically modulated mesenchymal stem/stromal cell secretomes.

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