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Role of Rho Kinase in Microvascular Damage Following Cerebral Ischemia Reperfusion in Rats

机译:Rho激酶在大鼠脑缺血再灌注后微血管损伤中的作用

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摘要

Rho kinase (ROCK) is a well-known downstream effector of Rho and plays an important role in various physiopathological processes. In this study, we aim to investigate the correlation between ROCK and microvascular damage in rat brain subjected to middle cerebral artery occlusion (MCAO) and reperfusion, and to elucidate the mechanisms underlying the microvascular damage. ROCK and matrix metalloproteinase 9 (MMP9) mRNA levels were determined by real time quantitative PCR, Laminin was detected by immunofluorescence and Blood Brain Barrier (BBB) permeability was examined by Evans Blue (EB) in rat MCAO models. We observed similar patterns of changes in ROCK expression, brain EB content, and Laminin expression at different time points after brain ischemia. Statistical analysis further confirmed a significant linear correlation of ROCK expression with the onset of microvascular damage in brain. Furthermore, the ROCK inhibitor fasudil decreased brain EB content but increased Laminin expression. These results provide strong evidence that ROCK mediates microvascular damage. In addition, we found that fasudil could significantly inhibit MMP9 expression induced by ischemia. Thus, our findings suggest that ROCK promotes microvascular damage by upregulating MMP9 and reveal ROCK as a promising therapeutic target for stroke.
机译:Rho激酶(ROCK)是Rho的众所周知的下游效应子,在各种生理病理过程中起着重要的作用。在这项研究中,我们旨在研究ROCK与大脑中动脉闭塞(MCAO)和再灌注对大鼠脑微血管损伤之间的相关性,并阐明微血管损伤的潜在机制。实时定量PCR测定ROCK和基质金属蛋白酶9(MMP9)mRNA水平,免疫荧光检测层粘连蛋白,埃文斯蓝(EB)检测大鼠MCAO模型中的血脑屏障(BBB)通透性。我们观察到在脑缺血后的不同时间点,ROCK表达,脑EB含量和层粘连蛋白表达的变化模式相似。统计分析进一步证实了ROCK表达与脑微血管损害的发生之间存在显着的线性相关性。此外,ROCK抑制剂法舒地尔可降低脑EB含量,但可增加层粘连蛋白表达。这些结果提供了强有力的证据,表明ROCK介导了微血管损伤。此外,我们发现法舒地尔可以显着抑制缺血诱导的MMP9表达。因此,我们的研究结果表明,ROCK通过上调MMP9促进微血管损伤,并揭示ROCK是中风的有希望的治疗靶点。

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