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Precision polymers with biological activity: Design towards self-assembly and bioactivity

机译:具有生物活性的精密聚合物:针对自组装和生物活性的设计

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This short review aims at highlighting new trends in polymer science towards the design of bioactive and biofunctional materials by design. The recent development of controlled polymerization and post-modification methods together with efficient coupling strategies based on "click chemistry" approaches allows the preparation of highly precise polymer systems that combine the ability to self-assemble into well-defined and predictable structures, together with a pre-defined or molecularly encoded bioactivity (such as interaction, inhibition, recognition). Even if polymers have been used for many years in the field of biomaterials mostly because of their mechanical properties and inert character, we believe that a novel area is arising, where polymers will be at the center of innovation. Such highly precise polymer materials are believed to bring breakthrough technologies at the interface between materials science and biotechnology. (C) 2015 Academie des sciences. Published by Elsevier Masson SAS. This is an open access article under the CC BY-NC-ND license.
机译:这篇简短的综述旨在突出高分子科学领域朝着通过设计来设计生物活性和生物功能材料的新趋势。受控聚合和后改性方法的最新发展以及基于“点击化学”方法的高效偶联策略,使得可以制备高度精确的聚合物体系,该体系结合了自组装成定义明确和可预测结构的能力,以及预定义或分子编码的生物活性(例如相互作用,抑制,识别)。即使聚合物由于其机械性能和惰性特性而在生物材料领域已经使用了很多年,我们仍相信会出现一个新的领域,其中聚合物将成为创新的中心。据信,这种高度精确的聚合物材料将在材料科学与生物技术之间的界面上带来突破性的技术。 (C)2015年科学研究院。由Elsevier Masson SAS发布。这是CC BY-NC-ND许可下的开放获取文章。

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