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Preconditional Activation of Hypoxia-Inducible Factors Ameliorates Ischemic Acute Renal Failure

缺氧(环境) 缺氧诱导因子 急性肾损伤 医学 羟基化 药理学 缺血 肌酐 内科学 内分泌学 氧气 化学 生物化学 基因 有机化学
作者
Wanja M. Bernhardt,Valentina CaCombining Circumflex Accentmpean,Sarah Kany,Jan-Steffen JuCombining Diaeresisrgensen,Alexander Weidemann,Christina Warnecke,Michael Arend,Stephen J. Klaus,Volkmar GuCombining Diaeresisnzler,Kerstin Amann,Carsten Willam,Michael S. Wiesener,Kai‐Uwe Eckardt
出处
期刊:Journal of The American Society of Nephrology [American Society of Nephrology]
卷期号:17 (7): 1970-1978 被引量:300
标识
DOI:10.1681/asn.2005121302
摘要

Activation of hypoxia-inducible transcription factor (HIF) has been identified as an important mechanism of cellular adaptation to low oxygen. Normoxic degradation of HIF is mediated by oxygen-dependent hydroxylation of specific prolyl residues of the regulative alpha-subunits by HIF prolyl hydroxylases (PHD). It was hypothesized that inhibition of HIF degradation by either hypoxia or pharmacologic inhibition of PHD would confer protection against subsequent ischemic injury. For testing this hypothesis ischemic acute renal failure was induced in rats by 40 min of clamping of the left renal artery after right-sided nephrectomy. Before surgery, pretreatment with either carbon monoxide, leading to tissue hypoxia, or the novel PHD inhibitor FG-4487 was applied. No toxic effects of FG-4487 were observed. Both pretreatments strongly induced the accumulation of HIF-1alpha and HIF-2alpha in tubular and peritubular cells, respectively, as well as HIF target gene expression. The course of subsequent ischemic injury was significantly ameliorated by both strategies of preconditioning, as evident from a significant improvement of serum creatinine and serum urea after 24 and 72 h. Furthermore, tissue injury and apoptosis were less severe, which were quantified by application of a standardized histologic scoring system in a blinded manner. In conclusion, the data provide proof of principle that preconditional activation of the HIF system protects against ischemic injury. Inhibiting the activity of HIF hydroxylases therefore seems to have considerable clinical perspectives.
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