Stanford University
Showing 21-30 of 65 Results
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Andrew R. Hoffman
Professor of Medicine (Endocrinology), Emeritus
Current Research and Scholarly InterestsMechanism of genomic imprinting of insulin like growth factor-2 and other genes.Long range chromatin interactions Role of histone modifications and DNA methylation in gene expression.
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Emory Hsu, M.D.
Clinical Assistant Professor (Affiliated), Medicine - Med/Endocrinology
Staff, Medicine - Med/EndocrinologyBioEmory Hsu received his Bachelor’s degree in Biochemical Sciences with honors from Harvard University. He then attended medical school at Vanderbilt University, during which he completed an extra research year fellowship through Howard Hughes Medical Institute and the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) at the National Institutes of Health in Bethesda, Maryland. He then completed his internship and residency training in Internal Medicine - research track at Emory University, followed by a fellowship in Endocrinology, Lipids, and Metabolism there. He is board certified in both Internal Medicine and Endocrinology. He is actively involved in the teaching and training of Stanford University Endocrinology fellows, Internal Medicine residents, and medical students.
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Pankaj Kapahi
Professor (Research) of Medicine (Endocrinology)
BioPankaj Kapahi is a Professor and aging researcher whose laboratory seeks to understand why organisms age and why the rate and consequences of aging differ so dramatically between individuals, sexes, and species. The lab approaches aging through the lens of evolution, asking how pathways that evolved to optimize growth, reproduction, and survival early in life can shape health and disease later in life.
A major focus of the laboratory is the interaction between nutrition, metabolism, reproduction, and aging. The lab has helped define how nutrient-sensing pathways, including TOR, dietary restriction, circadian biology, and metabolic adaptation regulate lifespan and age-related disease. More recently, this work has expanded to reproductive aging and the Reproductive Resilience Hypothesis, the idea that evolutionary pressures linking reproductive success to prolonged survival, repeated reproduction, and caregiving may have selected for biological programs that simultaneously support reproduction and somatic resilience.
Using comparative and experimental approaches across flies, worms, mice, and humans, the lab studies how these evolutionarily conserved programs influence brain aging, neurodegeneration, metabolic disease, reproductive aging, cell senescence, and resilience. The broader philosophy of the laboratory is that aging is best understood not as an isolated biological program, but as an emergent consequence of the evolutionary trade-offs among reproduction, nutrition, growth, maintenance, and survival. -
Seung K. Kim M.D., Ph.D.
KM Mulberry Professor, Professor of Developmental Biology, of Medicine (Endocrinology) and, by courtesy, of Pediatrics (Endocrinology)
Current Research and Scholarly InterestsPancreatic islets are essential for human health. We study the development and function of islet cells using modern methods in several model systems, including mice, pigs, human pancreas, primates, embryonic stem cells, and fruit flies. We have discovered critical factors required for islet development and mature islet cell function. These approaches have informed efforts to generate replacement islets, and provide immune protection of transplanted islets for diabetes.