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急性肾小管坏死之后,给予氨基酸可增强肾脏蛋白质代谢。

Amino acid administration enhances renal protein metabolism after acute tubular necrosis.

作者信息

Toback F G, Dodd R C, Maier E R, Havener L J

出版信息

Nephron. 1983;33(4):238-43. doi: 10.1159/000182960.

Abstract

The capacity of exogenous amino acids to alter renal protein metabolism was studied during renal regeneration after mercuric chloride-induced acute tubular necrosis in the rat. In regenerating cortical tissue, the free leucine concentration was 17% lower than normal, and was decreased further after glucose infusion. The concentration was raised above normal by amino acid infusion thereby ameliorating the deficit of this amino acid. Synthesis and degradation of rapidly-turning over proteins in renal cortical cells was examined in vitro. Renal protein synthesis in cortical slices was assessed by measurements of tissue leucine specific radioactivity and cycloheximide-inhibitable [14C]leucine incorporation into protein. Protein synthesis in regenerating tissue was 52% higher than normal and was not increased further by glucose infusion. In contrast, amino acid infusion increased the rate 47% above that observed after an isocaloric glucose infusion, thereby demonstrating that amino acid enhancement of protein synthesis is superimposed upon the increased synthetic rate observed during renal regeneration. Renal protein degradation remained at the normal rate after amino acid infusion, but was increased in regenerating tissue and after glucose infusion. These results indicate that infused amino acids act on the kidney to enhance protein synthesis and reduce protein degradation in regenerating renal cells after acute tubular necrosis.

摘要

在大鼠氯化汞诱导的急性肾小管坏死肾再生过程中,研究了外源性氨基酸改变肾脏蛋白质代谢的能力。在再生的皮质组织中,游离亮氨酸浓度比正常水平低17%,葡萄糖输注后进一步降低。氨基酸输注使该浓度升高至正常水平以上,从而改善了这种氨基酸的缺乏。体外检测了肾皮质细胞中快速周转蛋白质的合成和降解。通过测量组织亮氨酸比放射性和环己酰亚胺抑制的[14C]亮氨酸掺入蛋白质来评估皮质切片中的肾蛋白质合成。再生组织中的蛋白质合成比正常水平高52%,葡萄糖输注未使其进一步增加。相比之下,氨基酸输注使速率比等热量葡萄糖输注后观察到的速率提高了47%,从而表明氨基酸对蛋白质合成的增强作用叠加在肾再生期间观察到的合成速率增加之上。氨基酸输注后肾蛋白质降解维持在正常速率,但在再生组织和葡萄糖输注后增加。这些结果表明,输注的氨基酸作用于肾脏以增强急性肾小管坏死后再生肾细胞中的蛋白质合成并减少蛋白质降解。

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