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血管损伤后再狭窄和血栓形成的 microRNAs。

MicroRNAs for Restenosis and Thrombosis After Vascular Injury.

机构信息

From the Department of Medicine, Duke University, Durham, NC (C.G.); Division of Cardiology, Department of Medical and Surgical Science, "Magna Graecia" University, Catanzaro, Italy (S.D.R., C.I.); and URT-CNR, Department of Medicine, URT of Consiglio Nazionale delle Ricerche, Catanzaro, Italy (C.I.).

出版信息

Circ Res. 2016 Apr 1;118(7):1170-84. doi: 10.1161/CIRCRESAHA.115.308237.

Abstract

Percutaneous revascularization revolutionized the therapy of patients with coronary artery disease. Despite continuous technical advances that substantially improved patients' outcome after percutaneous revascularization, some issues are still open. In particular, restenosis still represents a challenge, even though it was dramatically reduced with the advent of drug-eluting stents. At the same time, drug-eluting stent thrombosis emerged as a major concern because of incomplete or delayed re-endothelialization after vascular injury. The discovery of microRNAs revealed a previously unknown layer of regulation for several biological processes, increasing our knowledge on the biological mechanisms underlying restenosis and stent thrombosis, revealing novel promising targets for more efficient and selective therapies. The present review summarizes recent experimental and clinical evidence on the role of microRNAs after arterial injury, focusing on practical aspects of their potential therapeutic application for selective inhibition of smooth muscle cell proliferation, enhancement of endothelial regeneration, and inhibition of platelet activation after coronary interventions. Application of circulating microRNAs as potential biomarkers is also discussed.

摘要

经皮血运重建技术使冠心病患者的治疗发生了革命性变化。尽管经皮血运重建技术的不断发展在很大程度上改善了患者的预后,但仍有一些问题悬而未决。特别是,尽管药物洗脱支架的出现极大地减少了再狭窄,但再狭窄仍然是一个挑战。与此同时,药物洗脱支架血栓形成成为一个主要问题,因为血管损伤后内皮化不完全或延迟。microRNAs 的发现揭示了几个生物学过程的一个以前未知的调节层,增加了我们对再狭窄和支架血栓形成的生物学机制的认识,为更有效和选择性的治疗揭示了新的有前途的靶点。本综述总结了最近关于 microRNAs 在动脉损伤后的作用的实验和临床证据,重点讨论了其潜在治疗应用的实际方面,用于选择性抑制平滑肌细胞增殖、增强内皮细胞再生和抑制经皮冠状动脉介入治疗后的血小板激活。还讨论了循环 microRNAs 作为潜在生物标志物的应用。

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