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Publication : Dysfunction of the PGC-1α-mitochondria axis confers adriamycin-induced podocyte injury.

First Author  Zhu C Year  2014
Journal  Am J Physiol Renal Physiol Volume  306
Issue  12 Pages  F1410-7
PubMed ID  24808537 Mgi Jnum  J:211042
Mgi Id  MGI:5573065 Doi  10.1152/ajprenal.00622.2013
Citation  Zhu C, et al. (2014) Dysfunction of the PGC-1alpha-mitochondria axis confers adriamycin-induced podocyte injury. Am J Physiol Renal Physiol 306(12):F1410-7
abstractText  Adriamycin (ADR)-induced nephropathy in animals is an experimental analog of human focal segmental glomerulosclerosis, which presents as severe podocyte injury and massive proteinuria and has a poorly understood mechanism. The present study was designed to test the hypothesis that the peroxisome proliferator-activated receptor-gamma coactivator (PGC)-1alpha-mitochondria axis is involved in ADR-induced podocyte injury. Using MPC5 immortalized mouse podocytes, ADR dose dependently induced downregulation of nephrin and podocin, cell apoptosis, and mitochondrial dysfunction based on the increase in mitochondrial ROS production, decrease in mitochondrial DNA copy number, and reduction of mitochondrial membrane potential and ATP content. Moreover, ADR treatment also remarkably reduced the expression of PGC-1alpha, an important regulator of mitochondrial biogenesis and function, in podocytes. Strikingly, PGC-1alpha overexpression markedly attenuated mitochondrial dysfunction, the reduction of nephrin and podocin, and the apoptotic response in podocytes after ADR treatment. Moreover, downregulation of PGC-1alpha and mitochondria disruption in podocytes were also observed in rat kidneys with ADR administration, suggesting that the PGC-1alpha-mitochondria axis is relevant to in vivo ADR-induced podocyte damage. Taken together, these novel findings suggest that dysfunction of the PGC-1alpha-mitochondria axis is highly involved in ADR-induced podocyte injury. Targeting PGC-1alpha may be a novel strategy for the treatment of ADR nephropathy and human focal segmental glomerulosclerosis.
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