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Biodegradable and bioabsorbable stents.

机译:可生物降解和可生物吸收的支架。

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摘要

Angioplasty of the coronary arteries has made significant headway in the past 20 years as a treatment for atherosclerotic vascular disease. Though drug-eluting stents are effective, they appear to invoke a thrombogenic response. Biodegradable stents are a promising alternative to permanent stents and may eventually be used to solve the lingering problem of in-stent restenosis. Additionally, fully degradable stents have the ability to deliver more drugs to the target site than a thin coating of drug on metallic stents. A variety of degradable materials have been studied for stent design, including polyesters, polycarbonates, bacterial-derived polymers, and corrodible metals. The ideal biodegradable stent would be reliably deployable under fluoroscopic guidance and situate into the target lesion with minimal endovascular trauma. The stent should degrade into nontoxic byproducts and invoke a minimal degree of inflammation at the target site. Finally, the stent itself should disappear within months (to years) without significant displacement from the deployment site. Although initial data from clinical trials have been sufficient to bring biodegradable materials into the realm of feasibility, future research is undoubtedly necessary to resolve the critical issues of inflammation and mechanical stability.
机译:在过去的20年中,作为动脉粥样硬化性血管疾病的治疗方法,冠状动脉血管成形术取得了重大进展。尽管药物洗脱支架是有效的,但它们似乎会引起血栓形成反应。可生物降解的支架是永久性支架的有前途的替代方法,最终可用于解决支架内再狭窄的持久问题。另外,与金属支架上的薄薄药物涂层相比,完全可降解的支架具有将更多药物输送到目标部位的能力。已经研究了用于支架设计的多种可降解材料,包括聚酯,聚碳酸酯,细菌衍生的聚合物和易腐蚀的金属。理想的可生物降解支架将在荧光镜的引导下可靠地展开,并位于目标病变内,而对血管内的损伤最小。支架应降解为无毒副产物,并在目标部位引起最小程度的炎症。最后,支架本身应在数月(至数年)内消失,而不会从部署位置明显移位。尽管来自临床试验的初步数据足以将可生物降解的材料带入可行性领域,但毫无疑问,未来的研究对于解决炎症和机械稳定性的关键问题是必不可少的。

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