脂肪族聚酯聚合物星:在生物医学和纳米技术中的合成、性能和应用。

Aliphatic polyester polymer stars: synthesis, properties and applications in biomedicine and nanotechnology.

机构信息

Department of Chemistry, University of Prince Edward Island, 550 University Avenue, Charlottetown, PEI, Canada C1A 4P3.

出版信息

Chem Soc Rev. 2011 Mar;40(3):1761-76. doi: 10.1039/c0cs00091d. Epub 2010 Nov 16.

Abstract

A critical review: the ring-opening polymerization of cyclic esters provides access to an array of biodegradable, bioassimilable and renewable polymeric materials. Building these aliphatic polyester polymers into larger macromolecular frameworks provides further control over polymer characteristics and opens up unique applications. Polymer stars, where multiple arms radiate from a single core molecule, have found particular utility in the areas of drug delivery and nanotechnology. A challenge in this field is in understanding the impact of altering synthetic variables on polymer properties. We review the synthesis and characterization of aliphatic polyester polymer stars, focusing on polymers originating from lactide, ε-caprolactone, glycolide, β-butyrolactone and trimethylene carbonate monomers and their copolymers including coverage of polyester miktoarm star copolymers. These macromolecular materials are further categorized by core molecules, catalysts employed, self-assembly and degradation properties and the resulting fields of application (262 references).

摘要

综述

环状酯的开环聚合可获得一系列可生物降解、可生物同化和可再生的聚合物材料。将这些脂肪族聚酯聚合物构建为更大的高分子框架可进一步控制聚合物特性,并开辟独特的应用。聚合物星型结构中,多个臂从单个核心分子辐射,在药物输送和纳米技术等领域具有特殊的用途。该领域的一个挑战是理解改变合成变量对聚合物性能的影响。我们综述了脂肪族聚酯聚合物星型结构的合成和表征,重点介绍了源自丙交酯、ε-己内酯、甘醇酸、β-丁内酯和三亚甲基碳酸酯单体以及它们的共聚物的聚合物,包括聚酯杂臂星型共聚物的综述。这些高分子材料进一步按核心分子、所用催化剂、自组装和降解特性以及由此产生的应用领域进行分类(262 篇参考文献)。

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