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Biocompatibility of Coronary Stents

机译:冠状动脉支架的生物相容性

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摘要

Cardiovascular disease is the dominant cause of mortality in developed countries, with coronary artery disease (CAD) a predominant contributor. The development of stents to treat CAD was a significant innovation, facilitating effective percutaneous coronary revascularization. Coronary stents have evolved from bare metal compositions, to incorporate advances in pharmacological therapy in what are now known as drug eluting stents (DES). Deployment of a stent overcomes some limitations of balloon angioplasty alone, but provides an acute stimulus for thrombus formation and promotes neointimal hyperplasia. First generation DES effectively reduced in-stent restenosis, but profoundly delay healing and are susceptible to late stent thrombosis, leading to significant clinical complications in the long term. This review characterizes the development of coronary stents, detailing the incremental improvements, which aim to attenuate the major clinical complications of thrombosis and restenosis. Despite these enhancements, coronary stents remain fundamentally incompatible with the vasculature, an issue which has largely gone unaddressed. We highlight the latest modifications and research directions that promise to more holistically design coronary implants that are truly biocompatible.
机译:在发达国家,心血管疾病是导致死亡的主要原因,而冠状动脉疾病(CAD)是主要的原因。开发用于治疗CAD的支架是一项重大创新,可促进有效的经皮冠状动脉血运重建。冠状动脉支架已经从裸露的金属成分演变而来,将药理学治疗的进步纳入了如今被称为药物洗脱支架(DES)的范围。支架的部署克服了仅球囊血管成形术的一些局限性,但为血栓形成提供了急性刺激并促进了新内膜增生。第一代DES可以有效减少支架内再狭窄,但会大大延迟愈合,并且容易发生晚期支架血栓形成,从长期来看会导致重大的临床并发症。这项审查的特点是冠状动脉支架的发展,详细介绍了逐步改进,旨在减轻血栓形成和再狭窄的主要临床并发症。尽管有这些改进,但冠状动脉支架仍然与脉管系统基本不兼容,这一问题在很大程度上尚未得到解决。我们重点介绍了最新的修改和研究方向,这些修改和研究方向有望更全面地设计真正具有生物相容性的冠状植入物。

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