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冠状动脉旁路移植血管病变中的机械转导

Mechanotransduction in Coronary Vein Graft Disease.

作者信息

Ruiter Matthijs Steven, Pesce Maurizio

机构信息

Cardiovascular Tissue Engineering Unit, Centro Cardiologico Monzino (IRCCS), Milan, Italy.

出版信息

Front Cardiovasc Med. 2018 Mar 14;5:20. doi: 10.3389/fcvm.2018.00020. eCollection 2018.

DOI:10.3389/fcvm.2018.00020
PMID:29594150
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5861212/
Abstract

Autologous saphenous veins are the most commonly used conduits in revascularization of the ischemic heart by coronary artery bypass graft surgery, but are subject to vein graft failure. The current mini review aims to provide an overview of the role of mechanotransduction signalling underlying vein graft failure to further our understanding of the disease progression and to improve future clinical treatment. Firstly, limitation of damage during vein harvest and engraftment can improve outcome. In addition, cell cycle inhibition, stimulation of Nur77 and external grafting could form interesting therapeutic options. Moreover, the Hippo pathway, with the YAP/TAZ complex as the main effector, is emerging as an important node controlling conversion of mechanical signals into cellular responses. This includes endothelial cell inflammation, smooth muscle cell proliferation/migration, and monocyte attachment/infiltration. The combined effects of expression levels and nuclear/cytoplasmic translocation make YAP/TAZ interesting novel targets in the prevention and treatment of vein graft disease. Pharmacological, molecular and/or mechanical conditioning of saphenous vein segments between harvest and grafting may potentiate targeted and specific treatment to improve long-term outcome.

摘要

自体隐静脉是冠状动脉旁路移植手术中用于缺血性心脏血运重建最常用的血管,但易发生静脉移植物失败。本综述旨在概述机械转导信号在静脉移植物失败中的作用,以加深我们对疾病进展的理解,并改善未来的临床治疗。首先,在获取和植入静脉过程中限制损伤可改善预后。此外,细胞周期抑制、Nur77刺激和外部移植可能成为有趣的治疗选择。此外,以YAP/TAZ复合体为主要效应器的Hippo信号通路正成为控制机械信号转化为细胞反应的重要节点。这包括内皮细胞炎症、平滑肌细胞增殖/迁移以及单核细胞附着/浸润。YAP/TAZ的表达水平和核/质转位的综合作用使其成为预防和治疗静脉移植物疾病的有趣新靶点。在获取和移植之间对隐静脉段进行药理学、分子和/或机械预处理可能增强靶向和特异性治疗,以改善长期预后。

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Force Triggers YAP Nuclear Entry by Regulating Transport across Nuclear Pores.力通过调节核孔转运来触发 YAP 的核输入。
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