Dedifferentiation and Proliferation of Surviving Epithelial Cells in Acute Renal Failure
Top Cited Papers
- 1 June 2003
- journal article
- review article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 14 (suppl_1) , S55-S61
- https://doi.org/10.1097/01.asn.0000067652.51441.21
Abstract
In contrast to the heart or brain, the kidney can completely recover from an ischemic or toxic insult that results in cell death. During recovery from ischemia/reperfusion injury, surviving tubular epithelial cells dedifferentiate and proliferate, eventually replacing the irreversibly injured tubular epithelial cells and restoring tubular integrity. Repair of the kidney parallels kidney organogenesis in the high rate of DNA synthesis and apoptosis and in patterns of gene expression. As has been shown by proliferating cell nuclear antigen and 5-bromo 2′-deoxyuridine labeling studies and, in unpublished studies, by counting mitotic spindles identified by labeling with antitubulin antibody, the proliferative response is rapid and extensive, involving many of the remaining cells of the proximal tubule. This extensive proliferative capacity is interpreted to reflect the intrinsic ability of the surviving epithelial cell to adapt to the loss of adjacent cells by dedifferentiating and proliferating. Adhesion molecules likely play important roles in the regulation of renal epithelial cell migration, proliferation, and differentiation, as do cytokines and chemokines. Better understanding of all of the characteristics resulting in dedifferentiation and proliferation of the proximal tubule epithelial cell and cell–cell and cell–matrix interactions important for this repair function will lead to novel approaches to therapies designed to facilitate the processes of recovery in humans. E-mail: joseph_bonventre@hms.harvard.eduKeywords
This publication has 35 references indexed in Scilit:
- Glial Cell Line Derived Neurotrophic Factor is Expressed by Epithelia of Human Renal DysplasiaJournal of Urology, 2002
- Human CD25+CD4+ T Suppressor Cell Clones Produce Transforming Growth Factor β, but not Interleukin 10, and Are Distinct from Type 1 T Regulatory CellsThe Journal of Experimental Medicine, 2002
- Cytosolic phospholipase A2 regulates Golgi structure and modulates intracellular trafficking of membrane proteinsJournal of Clinical Investigation, 2000
- In situ expression of the early growth response gene-1 during murine nephrogenesisJournal of Urology, 1995
- Role of proteoglycans and cytoskeleton in the effects of TGF-β1 on renal proximal tubule cellsKidney International, 1993
- Integrins: Versatility, modulation, and signaling in cell adhesionCell, 1992
- Insulin-like growth factors I and II are produced in the metanephros and are required for growth and development in vitro.The Journal of cell biology, 1991
- Polarized membrane expression of brush-border hydrolases in primary cultures of kidney proximal tubular cells depends on cell differentiation and is induced by dexamethasoneJournal of Cellular Physiology, 1990
- Characterization of ischemia-induced loss of epithelial polarityThe Journal of Membrane Biology, 1988
- Neural Cell Adhesion Molecule: Structure, Immunoglobulin-Like Domains, Cell Surface Modulation, and Alternative RNA SplicingScience, 1987