Author:
Lee H. Thomas,Emala Charles W.
Abstract
ABSTRACT. Renal ischemic reperfusion injury results in unacceptably high mortality and morbidity during the perioperative period. It has been recently demonstrated that ischemic preconditioning or adenosine receptor modulations attenuate renal ischemic reperfusion injuryin vivo. Anin vitromodel of ischemic renal injury was used in cultured human proximal tubule (HK-2) cells to further elucidate the protective signaling cascades against renal ischemic reperfusion injury. ATP depletion preconditioning (1 h of antimycin A and 2-deoxyglucose treatment followed by 1 h of recovery), adenosine, an A1adenosine receptor selective agonist, or an A2aadenosine receptor selective agonist significantly attenuated subsequent severe ATP depletion injury of HK-2 cells. In contrast, an adenosine receptor antagonist failed to prevent protection induced by ATP depletion preconditioning. Cytoprotection by ATP depletion preconditioning or A1adenosine receptor activation was prevented by inhibitors of extracellular signal-regulated mitogen-activated kinases, protein kinase C, and tyrosine kinases. The A1and A2aadenosine receptor-mediated cytoprotection were also dependent on Gi/oproteins and PKA activation, respectively. It is concluded that ATP depletion preconditioning and A1and A2aadenosine receptor activation protect HK-2 cells against severe ATP depletion injury via distinct signaling pathways.
Publisher
American Society of Nephrology (ASN)
Subject
Nephrology,General Medicine
Cited by
59 articles.
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