Diabetic Kidney Disease: A Cascade of Dysfunction from an Organelle to an Organ
The University of Texas MD Anderson Cancer Center
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Abstract
Farhad Danesh examines how mitochondrial reactive oxygen species, altered metabolism and structural remodelling convert hyperglycaemia into progressive kidney injury. The seminar connects mitochondrial dynamics with diabetic microvascular damage, non-coding RNA regulation and experimental models that establish causal links to disease progression. Genome-wide CRISPR screens and spatial metabolomics reveal cellular gene-regulatory and metabolic changes. Integrating these approaches with molecular genetics, genomics and epigenomics, the work seeks therapeutic targets to prevent diabetic kidney disease progressing to kidney failure. Hybrid: New Research Building Auditorium, Georgetown University Medical Center, Washington, DC, and Zoom. Thursday 24 September 2026, 16:00–17:00 EDT (America/New_York; UTC−4). Use the public event registration form to arrange attendance, or follow its Zoom link for remote participation. Organized by Georgetown’s Distinguished Scientist Seminar Series. Danesh is Professor of Medicine and Chief of Nephrology at MD Anderson.
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