State Key Laboratory of Advanced Technology for Materials Synthesis and Composite, Wuhan University of Technology, PR China.
Adv Mater. 2011 Mar 25;23(12):H57-77. doi: 10.1002/adma.201004326.
Controlling the surface chemical and physical properties of materials and modulating the interfacial behaviors of biological entities, e.g., cells and biomolecules, are central tasks in the study of biomaterials. In this context, smart polymer interface materials have recently attracted much interest in biorelated applications and have broad prospects due to the excellent controllability of their surface properties by external stimuli. Among such materials, poly(N-isopropylacrylamide) and its copolymer films are especially attractive due to their reversible hydrogen-bonding-mediated reversible phase transition, which mimics natural biological processes. This platform is promising for tuning surface properties or to introduce novel biofunctionalities via copolymerization with various functional units and/or combination with other materials. Important progress in this field in recent years is highlighted.
控制材料的表面化学和物理性质,并调节生物实体(如细胞和生物分子)的界面行为,是生物材料研究的核心任务。在这种情况下,智能聚合物界面材料由于其表面性能对外界刺激具有优异的可控性,最近在与生物相关的应用中引起了广泛关注,并具有广阔的前景。在这些材料中,聚(N-异丙基丙烯酰胺)及其共聚物薄膜由于其可逆氢键介导的相转变而特别吸引人,这模拟了自然生物过程。通过与各种功能单元共聚和/或与其他材料结合,该平台有望调节表面性能或引入新的生物功能。本文重点介绍了近年来该领域的重要进展。