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开发一种新型生物相容性聚合物系统,用于下一代药物洗脱支架中的药物长效释放。

Development of a novel biocompatible polymer system for extended drug release in a next-generation drug-eluting stent.

作者信息

Udipi Kishore, Chen Mingfei, Cheng Peiwen, Jiang Kevin, Judd Diane, Caceres Alejandra, Melder Robert J, Wilcox Josiah N

机构信息

Medtronic CardioVascular, 3576 Unocal Pl., Santa Rosa, California 95403, USA.

出版信息

J Biomed Mater Res A. 2008 Jun 15;85(4):1064-71. doi: 10.1002/jbm.a.31664.

Abstract

Drug-eluting stents have proven superior to bare metal stents with lower restenosis rates. Local delivery of drugs from these stents is achieved in most cases with the help of biostable polymer coatings. However, since the polymer coating remains in the body well after all the drug is released, patients can potentially develop hypersensitivity to these polymers--leading to complications such as late-stent thrombosis. It is therefore important that the polymers are designed to be biocompatible and well tolerated by the body. The polymer coatings are also expected to be robust and provide good control over elution of the desired drug. This paper describes the development of a unique, proprietary polymer blend system, specially designed to meet these requirements. Mutually compatible, free-radical-initiated elastomeric polymers were designed to provide a robust coating and offer a steady, sustained release of the highly hydrophobic drug zotarolimus over an extended period. The polymer blend system is also well tolerated by the hydrophilic environment in vivo, as demonstrated through porcine studies.

摘要

药物洗脱支架已被证明优于裸金属支架,其再狭窄率更低。在大多数情况下,这些支架通过生物稳定的聚合物涂层实现药物的局部递送。然而,由于在所有药物释放后聚合物涂层仍会在体内留存很长时间,患者可能会对这些聚合物产生超敏反应,从而导致诸如晚期支架血栓形成等并发症。因此,设计出具有生物相容性且能被人体良好耐受的聚合物非常重要。聚合物涂层还应坚固耐用,并能对所需药物的洗脱进行良好控制。本文描述了一种独特的专利聚合物共混体系的研发,该体系是专门为满足这些要求而设计的。相互兼容的自由基引发弹性体聚合物被设计用于提供坚固的涂层,并在较长时间内实现高度疏水的药物佐他莫司的稳定、持续释放。正如猪实验所表明的,该聚合物共混体系在体内的亲水环境中也具有良好的耐受性。

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