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单侧肾切除可减少大鼠缺血性急性肾衰竭时的凋亡细胞死亡,并增强肾小管细胞再生。

Uninephrectomy reduces apoptotic cell death and enhances renal tubular cell regeneration in ischemic ARF in rats.

作者信息

Nakajima T, Miyaji T, Kato A, Ikegaya N, Yamamoto T, Hishida A

机构信息

Department of Medicine, Hamamatsu University School of Medicine, Japan.

出版信息

Am J Physiol. 1996 Oct;271(4 Pt 2):F846-53. doi: 10.1152/ajprenal.1996.271.4.F846.

Abstract

Contralateral uninephrectomy attenuates unilateral ischemic renal injury functionally and morphologically. In this study we investigated the effects of uninephrectomy on apoptotic renal cell death and tubular regeneration in ischemic acute renal failure (ARF) in rats. Unilateral ischemic injury was provoked by a 60-min left renal artery occlusion in right-nephrectomized (Nx) and sham-nephrectomized (sham-Nx) rats. Uninephrectomy attenuated tubular damage 48 h following the renal ischemia Apoptotic cells were found in renal tissue as early as 3 h after reperfusion and increased in number by 12 h. The "ladder" pattern of DNA fragments on agarose gel electrophoresis was also apparent in ischemic kidney. Uninephrectomy reduced apoptotic cells and DNA fragmentation. The expression of proliferating cell nuclear antigen (PCNA) could be seen 24 h after reperfusion and progressively increased thereafter PCNA expression in ischemic kidney was greater in Nx than sham-Nx rats at 24 h after renal reperfusion. These data suggest that uninephrectomy reduces apoptotic cells and DNA fragmentation and enhances PCNA expression. The reduced apoptotic cell death and enhanced cell regeneration may be importantly involved in the uninephrectomy-induced attenuation of ischemic acute renal failure in rats.

摘要

对侧肾切除术可在功能和形态上减轻单侧缺血性肾损伤。在本研究中,我们调查了肾切除术对大鼠缺血性急性肾衰竭(ARF)中肾细胞凋亡性死亡和肾小管再生的影响。通过对右肾切除(Nx)和假肾切除(假-Nx)大鼠进行60分钟的左肾动脉闭塞来引发单侧缺血性损伤。肾缺血48小时后,肾切除术减轻了肾小管损伤。早在再灌注后3小时就在肾组织中发现了凋亡细胞,并且数量在12小时时增加。琼脂糖凝胶电泳上DNA片段的“梯形”模式在缺血性肾脏中也很明显。肾切除术减少了凋亡细胞和DNA片段化。再灌注24小时后可见增殖细胞核抗原(PCNA)的表达,此后逐渐增加。在肾再灌注后24小时,缺血性肾脏中PCNA的表达在Nx大鼠中比假-Nx大鼠中更高。这些数据表明,肾切除术减少了凋亡细胞和DNA片段化,并增强了PCNA表达。凋亡性细胞死亡的减少和细胞再生的增强可能在肾切除术诱导的大鼠缺血性急性肾衰竭减轻中起重要作用。

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