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Sox18 在切变应力增加的情况下维持肺内皮屏障。

Sox18 preserves the pulmonary endothelial barrier under conditions of increased shear stress.

机构信息

Pulmonary Disease Program Vascular Biology Center, Georgia Regents University, Augusta, Georgia.

出版信息

J Cell Physiol. 2014 Nov;229(11):1802-16. doi: 10.1002/jcp.24633.

Abstract

Shear stress secondary to increased pulmonary blood flow (PBF) is elevated in some children born with congenital cardiac abnormalities. However, the majority of these patients do not develop pulmonary edema, despite high levels of permeability inducing factors. Previous studies have suggested that laminar fluid shear stress can enhance pulmonary vascular barrier integrity. However, little is known about the mechanisms by which this occurs. Using microarray analysis, we have previously shown that Sox18, a transcription factor involved in blood vessel development and endothelial barrier integrity, is up-regulated in an ovine model of congenital heart disease with increased PBF (shunt). By subjecting ovine pulmonary arterial endothelial cells (PAEC) to laminar flow (20 dyn/cm(2) ), we identified an increase in trans-endothelial resistance (TER) across the PAEC monolayer that correlated with an increase in Sox18 expression. Further, the TER was also enhanced when Sox18 was over-expressed and attenuated when Sox18 expression was reduced, suggesting that Sox18 maintains the endothelial barrier integrity in response to shear stress. Further, we found that shear stress up-regulates the cellular tight junction protein, Claudin-5, in a Sox18 dependent manner, and Claudin-5 depletion abolished the Sox18 mediated increase in TER in response to shear stress. Finally, utilizing peripheral lung tissue of 4 week old shunt lambs with increased PBF, we found that both Sox18 and Claudin-5 mRNA and protein levels were elevated. In conclusion, these novel findings suggest that increased laminar flow protects endothelial barrier function via Sox18 dependent up-regulation of Claudin-5 expression.

摘要

由于肺血流量(PBF)增加而产生的切应力在一些患有先天性心脏异常的儿童中升高。然而,尽管有高水平的通透性诱导因子,大多数这些患者并未发展为肺水肿。先前的研究表明,层流流体切应力可以增强肺血管屏障完整性。然而,对于这种情况发生的机制知之甚少。通过微阵列分析,我们之前已经表明,Sox18 是一种参与血管发育和内皮屏障完整性的转录因子,在 PBF 增加(分流)的先天性心脏病羊模型中上调。通过使绵羊肺动脉内皮细胞(PAEC)经受层流(20 dyn/cm(2)),我们发现内皮细胞单层的跨内皮电阻(TER)增加,这与 Sox18 表达增加相关。此外,当 Sox18 过表达时,TER 也会增强,当 Sox18 表达减少时,TER 也会减弱,这表明 Sox18 响应切应力维持内皮屏障完整性。此外,我们发现切应力以 Sox18 依赖的方式上调细胞紧密连接蛋白 Claudin-5,并且 Claudin-5 耗竭消除了 Sox18 介导的对切应力的 TER 增加。最后,利用具有增加的 PBF 的分流羔羊 4 周龄外周肺组织,我们发现 Sox18 和 Claudin-5 的 mRNA 和蛋白水平均升高。总之,这些新发现表明,增加的层流通过 Sox18 依赖性 Claudin-5 表达上调来保护内皮屏障功能。

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