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周期性拉伸诱导大鼠血管平滑肌细胞生成凝血酶是通过整合素 αvβ3 途径介导的。

Cyclic stretch-induced thrombin generation by rat vascular smooth muscle cells is mediated by the integrin αvβ3 pathway.

机构信息

INSERM, U961, Vandoeuvre-les-Nancy, France.

出版信息

Cardiovasc Res. 2012 Dec 1;96(3):513-23. doi: 10.1093/cvr/cvs274. Epub 2012 Aug 21.

Abstract

AIMS

Vascular smooth muscle cell (VSMC) phenotypic modulation plays a pivotal role in atherothrombotic diseases. Thrombin generation at the surface of VSMCs and activation of integrin mechanotransduction pathways represent potential mechanisms. Here, we examine whether mechanical stretch increases thrombin generation on cultured rat aortic VSMCs.

METHODS AND RESULTS

The integrin α(v)β(3) antagonist peptide (cRGDPV) dose-dependently decreased thrombin generation without stretch. Static stretch (5%, 1 Hz) failed to modify the thrombin-forming capacity of VSMCs, whereas 10% cyclic stretch during 60 and 360 min enhanced integrin α(v)β(3) expression and thrombin generation at the surface of VSMCs by 30% without inducing apoptosis. Cyclic stretch also stimulated Src phosphorylation, cleavage of talin, and binding of prothrombin to VSMCs. Upregulation of α(v)β(3) expression, Src phosphorylation, and enhanced thrombin generation by cyclic stretch were abolished by cRGDPV and silencing RNA (siRNA) against α(v) as well as by selective inhibition of integrin α(v)β(3) inside-out signalling by a talin-siRNA. Complete abolition of stretch-induced VSMC-supported thrombin generation by the RGT peptide, which disrupts the interaction of Src with the β(3) cytoplasmic tail, demonstrates the link between outside-in pathways involving β(3)-Src interaction and thrombin activity dependent on inside-out signalling.

CONCLUSION

These data show that the contribution of cyclic stretch to VSMC-supported thrombin generation is driven by the integrin α(v)β(3) signalling pathway and suggest a role for pulsatility-induced intramural thrombin in VSMC-dependent vascular remodelling.

摘要

目的

血管平滑肌细胞(VSMC)表型调节在动脉血栓形成疾病中起着关键作用。VSMC 表面的凝血酶生成和整合素机械转导途径的激活代表了潜在的机制。在这里,我们研究了机械拉伸是否会增加培养的大鼠主动脉 VSMC 上的凝血酶生成。

方法和结果

整合素 α(v)β(3)拮抗剂肽(cRGDPV)呈剂量依赖性地降低无拉伸时的凝血酶生成。静态拉伸(5%,1 Hz)未能改变 VSMC 的凝血酶形成能力,而 10%的循环拉伸在 60 和 360 分钟时增强了整合素 α(v)β(3)的表达和 VSMC 表面的凝血酶生成,增加了 30%,而没有诱导细胞凋亡。循环拉伸还刺激了Src 的磷酸化、talin 的切割以及凝血酶原与 VSMC 的结合。cRGDPV 和针对 α(v)的 siRNA 以及针对整合素 α(v)β(3)内-外信号的 talin-siRNA 的使用均能抑制循环拉伸引起的 α(v)β(3)表达上调、Src 磷酸化和凝血酶生成的增加。用 RGT 肽(破坏 Src 与 β(3)胞质尾的相互作用)完全抑制拉伸诱导的 VSMC 支持的凝血酶生成,证明了涉及β(3)-Src 相互作用的外-内途径与依赖于内-外信号的凝血酶活性之间的联系。

结论

这些数据表明,循环拉伸对 VSMC 支持的凝血酶生成的贡献是由整合素 α(v)β(3)信号通路驱动的,并提示脉动诱导的管腔内凝血酶在 VSMC 依赖性血管重塑中的作用。

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