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Altered aquaporin expression and role in apoptosis during hepatic stellate cell activation.

机译:在肝星状细胞活化期间改变了Aquaporin表达和在细胞凋亡中的作用。

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BACKGROUND: Hepatic stellate cells (HSCs) are effector cells of hepatic fibrosis contributing to excessive collagen deposition and scar matrix formation. Sustained HSC activation leads to hepatic cirrhosis, a leading cause of liver-related death. Reversal of hepatic fibrosis has been attributed to the induction of HSC apoptosis. Aquaporins (AQPs) are critical proteinacious channels that mediate cellular water loss during the initiation and progression of apoptosis. AIMS: This study examined AQP expression in quiescent and activated HSCs and determined the responsiveness to AQP-dependent apoptosis. METHODS: Aquaporin gene and protein expressions in quiescent and activated HSCs were determined by reverse transcription polymerase chain reaction and Western blot analyses. AQP function was determined by cell swelling and apoptotic assays in the absence and presence of HgCl(2) , a non-specific AQP inhibitor. RESULTS: In this study, we report that activated HSCs showed no detectable expression of AQP 1, 5, 8, 9 and 12 mRNAs but expression was observed in quiescent HSCs. Similarly, AQP 0, 1, 8 and 9 protein was not detected in activated HSCs but was measured in quiescent HSCs. Dual fluorescent immunohistochemistry confirmed that AQP expression is decreased in activated HSCs in a model of liver injury. Functional studies demonstrated that quiescent HSCs were highly susceptible to osmotic challenge and apoptotic stimulus, whereas activated HSCs were less responsive. Finally, apoptosis was abrogated by the inhibition of AQP-dependent water movement. CONCLUSIONS: These findings demonstrate that increased resistance to apoptosis in activated HSCs is due, at least in part, to the changes in AQP expression and function that occur following HSC activation.
机译:背景:肝星状细胞(HSCs)是肝纤维化的效应细胞,有助于过量胶原沉积和瘢痕基质形成。持续的HSC活化导致肝硬化,肝脏相关死亡的主要原因。肝纤维化的逆转归因于HSC凋亡的诱导。 Aquaporins(AQPS)是在凋亡的开始和进展期间介导细胞水分损失的关键抗疣型渠道。目的:该研究检测了静态和活化HSC中的AQP表达,并确定了对AQP依赖性细胞凋亡的反应性。方法:通过逆转录聚合酶链反应和Western印迹分析测定静止和活化HSC中的水素基因和蛋白质表达。通过在没有特异性AQP抑制剂的情况下,通过细胞溶胀和凋亡测定来确定AQP功能。结果:在该研究中,我们报告了活化的HSCs显示出AQP 1,5,8,9和12mRNA没有可检测的表达,但在静止的HSC中观察到表达。类似地,在活化的HSC中未检测到AQP 0,1,8和9蛋白,但在静态HSC中测量。双荧光免疫组织化学证实,在肝损伤模型中,在活化的HSC中降低了AQP表达。功能性研究表明,静态HSCs高易受渗透攻击和凋亡刺激的影响,而活化的HSC响应则较小。最后,通过抑制AQP依赖性水运动来消除细胞凋亡。结论:这些研究结果表明,活化HSC中对凋亡的抗性增加至少部分地归因于HSC激活后发生的AQP表达和功能的变化。

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