Grenz Almut, Zhang Hua, Eckle Tobias, Mittelbronn Michel, Wehrmann Manfred, Köhle Christoph, Kloor Doris, Thompson Linda F, Osswald Hartmut, Eltzschig Holger K
Department of Pharmacology and Toxicology, Tübingen University Hospital, Tübingen, Germany.
J Am Soc Nephrol. 2007 Mar;18(3):833-45. doi: 10.1681/ASN.2006101141. Epub 2007 Jan 31.
Acute renal failure from ischemia significantly contributes to cardiovascular morbidity and mortality. Extracellular adenosine has been implicated as an anti-inflammatory metabolite particularly during conditions of limited oxygen availability (e.g., ischemia). Because ecto-5'-nucleotidase (CD73) is rate limiting for extracellular adenosine generation, this study examined the contribution of CD73-dependent adenosine production to ischemic preconditioning (IP) of the kidneys. After the initial observation that murine CD73 transcript, protein, and function are induced by renal IP, its role in IP-mediated kidney protection was studied. In fact, increases in renal adenosine concentration with IP are attenuated in cd73(-/-) mice. Moreover, pharmacologic inhibition of CD73 or its targeted gene deletion abolished renal protection by IP as measured by clearance studies, plasma electrolytes, and renal tubular destruction, and reconstitution of cd73(-/-) mice with soluble 5'-nucleotidase resulted in complete restoration of renal protection by IP. Finally, renal injury after ischemia was attenuated by intraperitoneal treatment of wild-type mice with soluble 5'-nucleotidase to a similar degree as by IP. Taken together, these data reveal what is believed to be a previously unrecognized role of CD73 in renal protection from ischemia and suggest treatment with soluble 5'-nucleotidase as a novel therapeutic approach in the treatment of renal diseases that are precipitated by limited oxygen availability.
缺血所致的急性肾衰竭是心血管疾病发病和死亡的重要原因。细胞外腺苷被认为是一种抗炎代谢物,尤其是在氧供应受限的情况下(如缺血)。由于胞外5'-核苷酸酶(CD73)是细胞外腺苷生成的限速酶,本研究探讨了CD73依赖性腺苷生成在肾脏缺血预处理(IP)中的作用。在初步观察到小鼠CD73转录本、蛋白和功能可被肾脏IP诱导后,研究了其在IP介导的肾脏保护中的作用。事实上,cd73(-/-)小鼠中IP引起的肾脏腺苷浓度升高有所减弱。此外,通过清除率研究、血浆电解质和肾小管损伤评估,CD73的药理学抑制或其靶向基因缺失消除了IP对肾脏的保护作用,用可溶性5'-核苷酸酶重建cd73(-/-)小鼠可使IP对肾脏的保护作用完全恢复。最后,用可溶性5'-核苷酸酶腹腔注射野生型小鼠,可使缺血后的肾损伤减轻,程度与IP相似。综上所述,这些数据揭示了CD73在肾脏缺血保护中一个此前未被认识的作用,并表明用可溶性5'-核苷酸酶治疗是治疗因氧供应受限而引发的肾脏疾病的一种新的治疗方法。