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A novel mechanism of inhibiting in-stent restenosis with arsenic trioxide drug-eluting stent: Enhancing contractile phenotype of vascular smooth muscle cells via YAP pathway

机译:一种抑制三氧化砷药物洗脱支架抑制支架再生的新机制:通过YAP途径增强血管平滑肌细胞的收缩表型

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Objective Arsenic trioxide (ATO or As 2 O 3 ) has beneficial effects on suppressing neointimal hyperplasia and restenosis, but the mechanism is still unclear. The goal of this study is to further understand the mechanism of ATO's inhibitory effect on vascular smooth muscle cells (VSMCs). Methods and results Through in vitro cell culture and in vivo stent implanting into the carotid arteries of rabbit, a synthetic-to-contractile phenotypic transition was induced and the proliferation of VSMCs was inhibited by ATO. F-actin filaments were clustered and the elasticity modulus was increased within the phenotypic modulation of VSMCs induced by ATO in vitro . Meanwhile, Yes-associated protein (YAP) nuclear translocation was inhibited by ATO both in vivo and in vitro . It was found that ROCK inhibitor or YAP inactivator could partially mask the phenotype modulation of ATO on VSMCs. Conclusions The interaction of YAP with the ROCK pathway through ATO seems to mediate the contractile phenotype of VSMCs. This provides an indication of the clinical therapeutic mechanism for the beneficial bioactive effect of ATO-drug eluting stent (AES) on in-stent restenosis (ISR).
机译:客观的三氧化砷(ATO或AS 2 O 3)对抑制内膜增生和再狭窄有益的影响,但该机制尚不清楚。本研究的目标是进一步了解ATO对血管平滑肌细胞(VSMC)的抑制作用的机制。方法和通过体外细胞培养和植入兔颈动脉的体内支架的方法和结果,诱导合成对收缩的表型转变,ATO抑制了VSMC的增殖。聚集F-肌动蛋白细丝,并且在体外诱导的VSMC的表型调节内增加弹性模量。同时,在体内和体外,Ato抑制了是相关的蛋白质(yap)核转移。发现岩石抑制剂或YAP灭失剂可以部分地掩盖ATO在VSMC上的表型调节。结论YAP与ATO岩石途径的相互作用似乎介导VSMC的收缩表型。这提供了针对支架内再狭窄(ISR)的Ato-Drabe洗脱支架(AES)的有益生物活性作用的临床治疗机制的指示。

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