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Controlled Slow-Release Drug-Eluting Stents for the Prevention of Coronary Restenosis: Recent Progress and Future Prospects

机译:缓释药物洗脱支架在预防冠状动脉再狭窄中的作用:最新进展和未来展望

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摘要

Drug-eluting stents (DES) have become more widely used by cardiologists than bare metal stents (BMS) because of their better ability to control restenosis. However, recognized negative events, particularly including delayed or incomplete endothelialization and late stent thrombosis, have caused concerns over the long-term safety of DES. Although stent-based drug delivery can facilitate a drug's release directly to the restenosis site, a burst of drug release can seriously affect the pharmacological action and is a major factor accounting for adverse effects. Therefore, the drug release rate has become an important criterion in evaluating DES. The factors affecting the drug release rate include the drug carrier, drug, coating methods, drug storage, elution direction, coating thickness, pore size in the coating, release conditions (release medium, pH value, temperature), and hemodynamics after the stent implantation. A better understanding of how these factors influence drug release is particularly important for the reasonable use of efficient control strategies for drug release. This review summarizes the factors influencing the drug release from DES and presents strategies for enhancing the control of the drug's release, including the stent design, the application of absorbable stents, the development of new polymers, and the application of nanocarriers and improvements in the coating technology. Therefore, this paper provides a reference for the preparation of novel controlled slow-release DES.
机译:由于其更好的控制再狭窄的能力,药物洗脱支架(DES)已比裸金属支架(BMS)被心脏病专家广泛使用。但是,公认的阴性事件,尤其是内皮化延迟或不完全和晚期支架血栓形成,引起了对DES长期安全性的担忧。尽管基于支架的药物递送可以促进药物直接释放到再狭窄部位,但是药物释放的爆发会严重影响药理作用,并且是造成不良反应的主要因素。因此,药物释放速率已成为评估DES的重要标准。影响药物释放速率的因素包括药物载体,药物,包衣方法,药物储存,洗脱方向,包衣厚度,包衣孔大小,释放条件(释放介质,pH值,温度)以及支架植入后的血流动力学。更好地理解这些因素如何影响药物释放对于合理使用有效的药物释放控制策略尤为重要。这篇综述总结了影响药物从DES释放的因素,并提出了增强药物释放控制的策略,包括支架设计,可吸收支架的应用,新聚合物的开发,纳米载体的应用以及涂层的改进技术。因此,本文为制备新型控释缓释DES提供了参考。

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