A novel model of ischemia in renal tubular cells which closely parallels in vivo injury.

K. Meldrum, D. Meldrum, K. Hile, A. Burnett, A. Harken
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引用次数: 65

Abstract

PURPOSE Renal ischemia-reperfusion (IR) injury is a devastating clinical problem. While effective animal models have been developed to investigate this condition, they are limited by differential renal cell inflammatory mediator production and heterogeneous cell sensitivity to ischemia. We therefore developed an in vitro model of renal tubular cell ischemia that simulates the cellular injury observed in animal models of renal IR injury. MATERIALS AND METHODS Using the established renal tubular cell line, LLC-PK1, simulated ischemia was induced by immersing the cellular monolayer in mineral oil. The effect of simulated ischemia on renal tubular cells was then determined by measuring the time course of TNF-alpha protein expression (ELISA), TNF-alpha mRNA induction (RT-PCR), and renal tubular cell apoptosis (TUNEL). RESULTS Maximal TNF-alpha protein expression occurs following 60 min of simulated ischemia and 2 h of substrate replacement (reimmersion in media), and maximal TNF-alpha mRNA induction occurs following 60 min of simulated ischemia. Cellular apoptosis peaks following 60 min of simulated ischemia and 24 h of reperfusion. CONCLUSION The time course of TNF-alpha production and apoptosis induction in this model closely parallels the time course for these markers in vivo. This study constitutes the initial demonstration that an in vitro oil immersion model of ischemia simulates the cellular injury (TNF-alpha production and apoptosis) observed in animal models of renal ischemia-reperfusion. This model may be used to study cellular mechanisms of IR in the absence of the systemic confounding variables.
一种新的肾小管细胞缺血模型,与体内损伤非常相似。
目的:肾缺血再灌注损伤是一个严重的临床问题。虽然已经建立了有效的动物模型来研究这种情况,但它们受到肾细胞炎症介质产生差异和细胞对缺血的异质敏感性的限制。因此,我们建立了一个体外肾小管细胞缺血模型,模拟在肾IR损伤动物模型中观察到的细胞损伤。材料与方法利用已建立的肾小管细胞系LLC-PK1,将细胞单层浸泡在矿物油中诱导模拟缺血。然后通过测定tnf - α蛋白表达(ELISA)、tnf - α mRNA诱导(RT-PCR)和肾小管细胞凋亡(TUNEL)的时间过程来观察模拟缺血对肾小管细胞的影响。结果tnf - α蛋白表达在模拟缺血60 min和底物置换2 h后达到最大,tnf - α mRNA诱导在模拟缺血60 min后达到最大。细胞凋亡在模拟缺血60 min和再灌注24 h后达到峰值。结论该模型中tnf - α产生和诱导细胞凋亡的时间过程与这些标志物在体内的时间过程基本一致。本研究首次证明了体外油浸缺血模型模拟了肾缺血再灌注动物模型中观察到的细胞损伤(tnf - α的产生和凋亡)。该模型可用于研究IR在缺乏系统混杂变量的细胞机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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