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聚乳酸-聚氧乙烯嵌段共聚物:自组装和生物医学应用的新方向。

Poly(lactic acid)-poly(ethylene oxide) block copolymers: new directions in self-assembly and biomedical applications.

机构信息

Department of Chemical Engineering, University of Massachusetts Amherst, Amherst, MA 01003, USA.

出版信息

Curr Med Chem. 2011;18(36):5676-86. doi: 10.2174/092986711798347324.

Abstract

In this review, we focus on recent developments in biomaterials of poly(lactic acid)-poly(ethylene oxide)-poly(lactic acid) (PLA-PEO-PLA) triblock copolymers. This system has been widely explored for a number of applications in controlled and sustained release of drugs and in tissue engineering devices. New insights into self-assembly of these materials have resulted in new PLA-PEOPLA solutions and gels with novel structural, mechanical, and drug release properties. Recent innovations include hydrogels with nanoscale crystalline domains, solutions and gels based on PLA stereocomplexes, and nanoparticle-copolymer assemblies. We first briefly review synthetic approaches to these materials. We then describe characterization of the solution properties, formation of micelles, drug release characteristics, and investigation of the sol-gel transition. The properties of PLA-PEO-PLA hydrogels are then discussed, including the effect of crystalline domains on the gel microstructure and efforts to tune the elastic modulus and degredation properties of gels through the addition of chemical crosslinks. In the second half of the review, we discuss the wide variety of biomedical applications currently being pursued for PLA-PEO-PLA triblock copolymer systems. Polymer-nanoparticle complexes have been investigated to facilitate the formation of metal nanoclusters used as biosensors, as well as to enhance the elastic modulus of hydrogels. Thin polymer films have also been investigated for use as tissue engineering scaffolds and as drug-eluding coatings for stents and other medical implants. Finally, we discuss future directions for biomedical applications of this system, including new strategies for improving the specificity and cell affinity of PLA-based biomaterials.

摘要

在这篇综述中,我们重点介绍了聚乳酸-聚环氧乙烷-聚乳酸(PLA-PEO-PLA)三嵌段共聚物的生物材料的最新进展。该体系已广泛应用于药物的控制和持续释放以及组织工程器械等多个领域。对这些材料自组装的新见解导致了具有新颖结构、力学和药物释放性能的新型 PLA-PEO-PLA 溶液和凝胶的出现。最近的创新包括具有纳米级晶区的水凝胶、基于 PLA 立体复合物的溶液和凝胶以及纳米粒子-共聚物组装体。我们首先简要回顾了这些材料的合成方法。然后描述了对溶液性质、胶束形成、药物释放特性和溶胶-凝胶转变的研究。接着讨论了 PLA-PEO-PLA 水凝胶的性质,包括结晶区对凝胶微观结构的影响,以及通过添加化学交联来调节凝胶弹性模量和降解性能的努力。在综述的后半部分,我们讨论了 PLA-PEO-PLA 三嵌段共聚物体系目前广泛应用于各种生物医学领域。聚合物-纳米粒子复合物已被用于促进金属纳米簇的形成,用作生物传感器,以及增强水凝胶的弹性模量。聚合物薄膜也被用于组织工程支架以及支架和其他医疗植入物的药物逃避涂层。最后,我们讨论了该体系在生物医学应用方面的未来发展方向,包括改善基于 PLA 的生物材料的特异性和细胞亲和力的新策略。

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