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缺血再灌注对肾刷状缘膜中钠依赖性磷酸盐转运的影响。

Effect of ischemia reperfusion on sodium-dependent phosphate transport in renal brush border membranes.

作者信息

Khundmiri Syed J, Asghar Mohammed, Banday Anees A, Khan Farah, Salim Samina, Levi Moshe, Yusufi Ahad N K

机构信息

Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh 202002, India.

出版信息

Biochim Biophys Acta. 2005 Oct 1;1716(1):19-28. doi: 10.1016/j.bbamem.2005.08.009.

Abstract

The effect of ischemia induced acute renal failure (ARF) on the transport of phosphate (Pi) after early (15-30 min) and prolonged (60 min) ischemia in the brush border membrane vesicles (BBMV) from rat renal cortex was studied. Sodium-dependent transport of Pi declined significantly and progressively due to ischemia. Western blot analysis of BBM from ischemic rats showed decreased expression of NaPi-2. A compensatory increase was observed in Pi uptake in BBMV from contralateral kidneys. There was no significant difference in NaPi-2 expression between BBMV from sham and contralateral kidneys. Early blood reperfusion for 15 min after 30 min ischemia caused further decline in Pi uptake. Prolonged reperfusion for 120 min caused partial reversal of transport activities in 30-min ischemic rats. However, no improvement in the transport of Pi was observed in 60-min ischemic rats after 120 min of blood reperfusion. Kinetic studies showed that the effect of ischemia and blood reperfusion was dependent on the Vmax of the Na-Pi transporter. Western blot analysis showed increased expression of NaPi-2 in the BBMs from ischemia-reperfusion animals. Further, a shift in the association of Na ions to transport one molecule of Pi was observed under different extracellular Na concentrations [Na]o. Feeding rats with low Pi diet and/or treatment with thyroid hormone (T3) prior to ischemia resulted in increased basal Pi transport. Ischemia caused similar decline in Pi transport in BBM from LPD and/or T3 animals. However, recovery in these animals was faster than the normal Pi diet fed (NPD) animals. The study suggests a change in the intrinsic properties of the Na-Pi transporter in rat kidneys due to ischemia. The study also indicates that treatment with T3 and feeding LPD prior to ischemia caused faster recovery of phosphate uptake due to ischemia-reperfusion injury.

摘要

研究了缺血诱导的急性肾衰竭(ARF)对大鼠肾皮质刷状缘膜囊泡(BBMV)在早期(15 - 30分钟)和长时间(60分钟)缺血后磷酸盐(Pi)转运的影响。由于缺血,Pi的钠依赖性转运显著且逐渐下降。对缺血大鼠的BBM进行蛋白质免疫印迹分析显示,NaPi - 2的表达降低。在对侧肾脏的BBMV中观察到Pi摄取有代偿性增加。假手术组和对侧肾脏的BBMV之间NaPi - 2表达无显著差异。缺血30分钟后早期血液再灌注15分钟导致Pi摄取进一步下降。长时间再灌注120分钟导致30分钟缺血大鼠的转运活性部分恢复。然而,60分钟缺血大鼠在血液再灌注120分钟后未观察到Pi转运改善。动力学研究表明,缺血和血液再灌注的影响取决于钠 - 磷转运体的最大反应速度(Vmax)。蛋白质免疫印迹分析显示,缺血 - 再灌注动物的BBM中NaPi - 2表达增加。此外,在不同细胞外钠浓度[Na]o下,观察到转运一分子Pi时钠离子结合的变化。在缺血前给大鼠喂食低磷饮食和/或用甲状腺激素(T3)治疗导致基础Pi转运增加。缺血导致低磷饮食和/或T3处理动物的BBM中Pi转运出现类似下降。然而,这些动物的恢复比正常磷饮食喂养(NPD)动物更快。该研究表明,缺血导致大鼠肾脏中钠 - 磷转运体的内在特性发生变化。该研究还表明,缺血前用T3治疗和喂食低磷饮食可使缺血 - 再灌注损伤导致的磷酸盐摄取更快恢复。

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