Lee Joo-Woon, Gardella Joseph A
Department of Chemistry, The State University of New York at Buffalo, Buffalo, NY 14260-3000, USA.
Anal Bioanal Chem. 2002 Aug;373(7):526-37. doi: 10.1007/s00216-002-1339-2. Epub 2002 Jun 19.
Impressive advances in biotechnology, bioengineering, and biomaterials with unique properties have led to increased interest in polymers and other novel materials in biological and biomedical research and development over the past two decades. Although biomaterials have already made an enormous impact in biomedical research and clinical practice, there is a need for better understanding of the surface and interfacial chemistry between tissue (or cells) and biomedical materials. This is because the detailed physicochemical events related to the biological response to the surface of materials still often remain obscure, even though surface properties are important determinants of biomedical material function. In this regard, data available in the literature show the complexity of the interactions (surface reorganization, non-specific/specific protein adsorption, and chemical reactions such as acid-base, ion pairing, ion exchange, hydrogen bonding, divalent-ion bridging) and the interrelationship between biological environments, interfacial properties, and surface functional groups responsible for the biological responses. Because of the multidisciplinary nature of surface and interfacial phenomena at the surface of biomedical polymers, this review focuses on several aspects of current work published on poly(alpha-hydroxy acid)s and their associated copolymers:surface structure-biomedical function relationships;physicochemical strategies for surface modification; and, finally,synthetic strategies to increase biocompatibility for specific in-vivo and/or in-vitro biomedical applications.
在过去二十年中,生物技术、生物工程和具有独特性能的生物材料取得了令人瞩目的进展,这使得生物和生物医学研究与开发领域对聚合物及其他新型材料的兴趣日益浓厚。尽管生物材料已经在生物医学研究和临床实践中产生了巨大影响,但仍需要更好地理解组织(或细胞)与生物医学材料之间的表面和界面化学。这是因为与材料表面生物反应相关的详细物理化学过程往往仍不明确,尽管表面性质是生物医学材料功能的重要决定因素。在这方面,文献中的数据表明了相互作用(表面重组、非特异性/特异性蛋白质吸附以及酸碱、离子配对、离子交换、氢键、二价离子桥接等化学反应)的复杂性,以及生物环境、界面性质和负责生物反应的表面官能团之间的相互关系。由于生物医学聚合物表面的表面和界面现象具有多学科性质,本综述重点关注已发表的关于聚(α-羟基酸)及其相关共聚物的当前研究工作的几个方面:表面结构与生物医学功能的关系;表面改性的物理化学策略;最后是提高特定体内和/或体外生物医学应用生物相容性的合成策略。
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