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周期性拉伸下调动脉血管连接蛋白 43 蛋白表达:一项离体研究。

Cyclic stretch downregulates arterial vascular connexin43 protein expression: an ex vivo study.

机构信息

Cardiovascular Systems Laboratory, Department of Bioengineering, University of Pittsburgh, 306 Center for Bioengineering, 300 Technology Drive, Pittsburgh, PA 15219, USA.

出版信息

Biomech Model Mechanobiol. 2010 Apr;9(2):203-11. doi: 10.1007/s10237-009-0171-4. Epub 2009 Sep 16.

Abstract

Vascular cells may communicate through gap junctions that are formed by connexin (Cx) proteins. We investigated differential regulation of arterial gap junctions by steady and cyclic stretch and the underlying mechanotransduction pathways. Ex vivo culture of rabbit thoracic aortas was used to investigate regulation of Cx43 by cyclic stretch. After culturing for 6 or 24 h, Cx43 protein levels were quantified using Western blot. Cultures under a pulsatile pressure (mean 80 mmHg, pulse 30 mmHg) decreased Cx43 protein at both 6 and 24 h as compared with cultures under a steady pressure (80 mmHg). The regulation of Cx43 protein was mediated by pulsatile pressure-induced cyclic stretch, not by cyclic stress. Protein levels of active and total Src were also decreased by cyclic stretch at 24 h. The Src- specific inhibitor PP1 in steady culture only or in both steady and pulsatile culture conditions eliminated the difference in Cx43 protein levels between the two culture conditions. Addition of reactive oxygen species inhibitor apocynin to the pulsatile culture abolished the differences in Src and Cx43 protein levels between the two cultures. Thus, Src and reactive oxygen species appear to play a role in cyclic stretch-mediated regulation of Cx43 protein. These results are likely to have important implications in cardiovascular physiology and pathophysiology under conditions wherein significant alterations in the level of cyclic stretch are present.

摘要

血管细胞可以通过间隙连接进行通讯,而间隙连接是由连接蛋白 (Cx) 形成的。我们研究了动脉间隙连接在稳定和循环拉伸下的差异调节,以及潜在的机械转导途径。使用兔胸主动脉的体外培养来研究循环拉伸对 Cx43 的调节。培养 6 或 24 小时后,使用 Western blot 定量 Cx43 蛋白水平。与稳定压力(80mmHg)下的培养相比,在脉动压力(平均 80mmHg,脉冲 30mmHg)下培养 6 和 24 小时后,Cx43 蛋白水平降低。Cx43 蛋白的调节是由脉动压力诱导的循环拉伸介导的,而不是由循环应力介导的。在 24 小时时,循环拉伸还降低了活性和总Src 的蛋白水平。在稳定培养中或在稳定和脉动培养条件下加入Src 特异性抑制剂 PP1 消除了两种培养条件下 Cx43 蛋白水平的差异。在脉动培养中加入活性氧抑制剂 apocynin 消除了两种培养条件下 Src 和 Cx43 蛋白水平的差异。因此,Src 和活性氧似乎在循环拉伸介导的 Cx43 蛋白调节中发挥作用。这些结果可能对存在循环拉伸水平显著变化的心血管生理学和病理生理学具有重要意义。

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