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首页> 外文期刊>American Journal of Physiology >siRNA-induced caveolin-1 knockdown in mice increases lung vascular permeability via the junctional pathway.
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siRNA-induced caveolin-1 knockdown in mice increases lung vascular permeability via the junctional pathway.

机译:小鼠中siRNA诱导的Caveolin-1敲低会通过连接途径增加肺血管通透性。

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Caveolin-1, the principal integral membrane protein of caveolae, has been implicated in regulating the structural integrity of caveolae, vesicular trafficking, and signal transduction. Although the functions of caveolin-1 are beginning to be explored in caveolin-1-/- mice, these results are confounded by unknown compensatory mechanisms and the development of pulmonary hypertension, cardiomyopathy, and lung fibrosis. To address the role of caveolin-1 in regulating lung vascular permeability, in the present study we used small interfering RNA (siRNA) to knock down caveolin-1 expression in mouse lung endothelia in vivo. Intravenous injection of siRNA against caveolin-1 mRNA incorporated in liposomes selectively reduced the expression of caveolin-1 by approximately 90% within 96 h of injection compared with wild-type mice. We observed the concomitant disappearance of caveolae in lung vessel endothelia and dilated interendothelial junctions (IEJs) as well as increased lung vascular permeability to albumin via IEJs. The reduced caveolin-1 expression also resulted in increased plasma nitric oxide concentration. The nitric oxide synthase inhibitor L-NAME, in part, blocked the increased vascular albumin permeability. These morphological and functional effects of caveolin-1 knockdown were reversible within 168 h after siRNA injection, corresponding to the restoration of caveolin-1 expression. Thus our results demonstrate the essential requirement of caveolin-1 in mediating the formation of caveolae in endothelial cells in vivo and in negatively regulating IEJ permeability.
机译:小窝蛋白的主要组成部分膜蛋白Caveolin-1与调节小窝蛋白的结构完整性,囊泡运输和信号转导有关。尽管在Caveolin-1-/-小鼠中开始探索Caveolin-1的功能,但这些结果因未知的补偿机制以及肺动脉高压,心肌病和肺纤维化的发展而混淆。为了解决小窝蛋白-1在调节肺血管通透性中的作用,在本研究中,我们使用小分子干扰RNA(siRNA)敲低了小鼠肺内皮细胞体内小窝蛋白-1的表达。与野生型小鼠相比,静脉内注射针对脂质体中掺入的Caveolin-1 mRNA的siRNA的注射在96小时内选择性降低了Caveolin-1的表达约90%。我们观察到肺泡内皮细胞和扩张的内皮间连接(IEJs)海绵体的同时消失,以及通过IEJs对白蛋白的肺血管通透性增加。降低的caveolin-1表达还导致血浆一氧化氮浓度升高。一氧化氮合酶抑制剂L-NAME部分阻止了血管白蛋白通透性的提高。 siRNA注射后168小时内,caveolin-1敲除的这些形态学和功能作用是可逆的,对应于Caveolin-1表达的恢复。因此,我们的结果证明了caveolin-1在介导体内内皮细胞中caveolae的形成以及负调节IEJ通透性方面的基本要求。

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