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    Home»Conditions»Internationally Recognized Scientists Expand Miller School of Medicine’s Strength in Disease Modeling and Regenerative Science
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    Internationally Recognized Scientists Expand Miller School of Medicine’s Strength in Disease Modeling and Regenerative Science

    healthylife7By healthylife7August 15, 2026No Comments6 Mins Read
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    Internationally Recognized Scientists Expand Miller School of Medicine’s Strength in Disease Modeling and Regenerative Science
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    Research and Innovation

    Internationally Recognized Scientists Expand Miller School of Medicine’s Strength in Disease Modeling and Regenerative Science

    By: Chad Hanson | August 15, 2026 | 8 min. read | 

    Benjamin Freedman, Ph.D., a pioneer in kidney organoids and genome editing, and Hongxia Fu, Ph.D., an expert in mechanobiology and disease modeling, join the University of Miami Miller School of Medicine to advance regenerative science, drug discovery and translational research

    The University of Miami Miller School of Medicine’s Department of Cell and Systems Biology proudly welcomes two internationally recognized scientists with expertise in organoids, genome editing, mechanobiology and translational human disease modeling

    Benjamin Freedman, Ph.D., and Hongxia Fu, Ph.D., advance groundbreaking research and innovation that provide scientists and clinicians new ways to investigate how disease develops in human tissue. Dr. Freedman pioneered the development of human kidney organoids to create sophisticated models of kidney disease, while Dr. Fu studies how physical forces surrounding cells influence human health and disease. Together, their work expands the Department of Cell and Systems Biology’s ability to identify new therapies.

    Dr. Freedman joins the department as professor and vice chair for research and co-director of the Healthy Aging Initiative at the Peggy and Harold Katz Family Drug Discovery Center. Dr. Fu, an associate professor, will lead an interdisciplinary program with the Department of Biomedical Engineering

    Miller School of Medicine Department of Cell and Systems Biology Chair Dr. Leor Weinberger in dark blazer, standing outside on the Miller School campus
    Dr. Leor Weinberger is the founding chair of the Miller School’s Department of Cell and Systems Biology.

    “We are thrilled to welcome Drs. Freedman and Fu, who developed groundbreaking, disruptive disease modeling technology to regenerate the kidney,” said Leor Weinberger, Ph.D., founding chair of the Department of Cell and Systems Biology. “This is an exciting new era for our team. Drs. Freedman and Fu are prolific and exceptionally well-funded academic scientists, as well as successful biomedical entrepreneurs. Attracting them to Miami, as anchor faculty in our new department, is an enormous coup for the institution.”

    Re-Creating Human Kidney Disease in a Petri Dish

    Dr. Freedman is one of the original inventors of human kidney organoids. These miniature, laboratory-grown structures closely resemble the functional units of the kidney. When implanted inside the body, organoids form kidney tissues, a step towards kidney regeneration from a patient’s own cells. He also combined his innovative organoids with CRISPR/Cas9 genome-editing technology to re-create polycystic kidney disease (PKD) in a petri dish, providing the first-ever human model of PKD progression in a lab setting.

    This innovation represented a major technological leap in the field of nephrology, allowing scientists to closely investigate kidney development, injury, regeneration and disease progression with unprecedented precision and potential

    “Dr. Freedman’s expertise is entirely aligned with the mission of the institution to promote drug discovery and development, and I am extremely excited to work with him to generate new therapies for patients affected by rare kidney diseases associated with premature ageing,” said Alessia Fornoni, M.D., Ph.D., a professor in the Katz Family Division of Nephrology and Hypertension, director and chair of the Peggy and Harold Katz Family Drug Discovery Center and assistant dean for research, training and development at the Miller School.

    Dr. Freedman has published more than 60 peer-reviewed articles, and his work has appeared in leading scientific journals, including Cell Stem Cell, Nature Materials and Nature Biomedical Engineering. His contributions have earned international recognition, including the American Society of Nephrology’s Donald W. Seldin Young Investigator Award

    “I am incredibly honored and excited to be joining the esteemed faculty of the University of Miami,” said Dr. Freedman. “The opportunity to work with Drs. Weinberger, Fornoni and so many others is a dream come true. The dynamic, innovative environment they have established will enable our research programs and trainees to truly thrive.”

    Research Focus Areas

    The research programs of Benjamin Freedman, Ph.D., and Hongxia Fu, Ph.D., expand the University of Miami’s capabilities in regenerative medicine, disease modeling, mechanobiology and translational science

    Benjamin S. Freedman, Ph.D

    • Kidney organoids and disease-in-a-dish models
    • Stem cell biology and regenerative medicine
    • Genome editing and precision medicine
    • Polycystic kidney disease research
    • Organoid-on-chip technologies
    • Drug discovery and therapeutic development
    • Tissue regeneration and human disease modeling

    Hongxia Fu, Ph.D

    • Mechanobiology and cellular force sensing
    • Vascular biology and blood vessel function
    • Blood clotting and thrombosis research
    • Single-molecule imaging technologies
    • Cilia biology and mechanosensing
    • Organoid engineering and disease modeling
    • Bioengineering approaches to human health

    Why This Matters

    Together, Dr. Freedman and Dr. Fu bring internationally recognized expertise in organoids, mechanobiology, genome editing and regenerative science. Their work helps researchers better model human disease, identify new therapeutic targets and accelerate the development of future treatments

    Engineering New Insights Into Human Biology

    Dr. Fu’s research bridges biophysics, bioengineering and stem cell biology to reveal how cells and proteins respond to mechanical forces and environmental signals. Her work seeks to uncover fundamental principles governing human biology and translate these discoveries into new approaches for diagnosing and treating disease

    Dr. Fu’s research focuses on harnessing mechanobiology to understand and treat human disease and has developed innovative microfluidic platforms, single-molecule technologies and advanced imaging approaches. Her work reveals how mechanical forces regulate protein function and cellular interactions essential to hemostasis and thrombosis, leading to new understanding of bleeding and clotting disorders. Her research has expanded to include how blood vessels form and function and how miniature, lab-grown versions of human organs can be engineered to study disease. Her extensive publications have focused on blood vessel health, organ development and kidney disease.

    “Force is everywhere in our body, providing important opportunities to better understand disease and develop new cures,” said Dr. Fu. “At the University of Miami, I’m thrilled to work with bioengineers, cell biologists and physician-scientists to advance the emerging field of mechanomedicine and translate these discoveries into improvements in human health.”

    Supported by multiple National Institutes of Health awards, including an NIH Maximizing Investigators’ Research Award and ongoing R01 funding, Dr. Fu seeks to translate fundamental discoveries in mechanobiology into advances for human health

    Developing the Next Generation of Scientists 

    Beyond their research accomplishments, both scientists have demonstrated strong commitments to mentorship, trainee development and scientific collaboration. They have guided dozens of students, postdoctoral fellows and early-career investigators while leading nationally recognized research programs. The pair also co-founded a biotechnology company focused on developing mini-organ disease models

    Their arrival expands the scientific toolkit of the Department of Cell and Systems Biology while making human biology easier to model, measure, and ultimately translate into better treatments

    Composite image of seven University of Miami Miller School of Medicine faculty members elected to the Academy of Science, Engineering and Medicine of Florida (ASEMFL), arranged in two rows over a light gray–toned medical research laboratory background. The top row shows three portrait headshots, and the bottom row shows four, separated by a thin horizontal white line at the center of the image. From left to right, following the order referenced in the accompanying document, the individuals are Antoni Barrientos, Olveen Carrasquillo, Steven Safren, Mustafa Tekin, Michal Toborek, Marjana Tomic-Canic, and Leor Weinberger. Each person is shown from the chest up wearing either a lab coat or professional attire, with the laboratory setting—benches, shelving, and equipment—softened in the background to maintain focus on the portraits.

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    A white background plot showing a branching, tree‑like structure made of many thin, colored lines representing cell trajectories. The branches spread outward from a dense central point. Colors range from blue to green to red, indicating progression along a time scale. Vertical color bars on the left and right edges show the same blue‑to‑red gradient. The image is labeled “raw.embryo.time” at the top.

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