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Polymer bioconjugates: Modern design concepts toward precision hybrid materials

机译:聚合物生物缀合物:精密混合材料的现代设计概念

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The conjugation of synthetic polymers with various biomolecules provides an easy access to biohybrid materials which combine advantages from both the synthetic world and Nature. Due to the rapid development of synthetic tools and deepening understanding of biomolecule structure and function, these polymer bioconjugates are not only important for biomedical applications, but also can serve as innovative constructs in materials science. This review summarizes a selection of structurally defined polymer bioconjugates and their application as building blocks for preparing hierarchical biohybrid materials. From this perspective, we discuss and illustrate recent breakthroughs, which portray how the field may potentially develop. We first introduce the general synthetic approaches that have been employed for the construction of precision polymer bioconjugates. Various chemistries for site-specific conjugation, different approaches to control the size, distribution, topology, and function of polymers, as well as the versatile manipulation of bioconjugate architecture are presented. Subsequently, recent advances of polymer bioconjugates based on different biological entities including proteins/peptides, nucleic acids, carbohydrates, lipids and even live cells are discussed individually. In particular, we focus on various forms of well-defined constructs at different length scales ranging from precision polymers and nano-structures templated by biomolecules to highly ordered assemblies of polymer bioconjugates in solution, in bulk and on surfaces. Some representative applications of these biohybrids resulting from their high-degree of structural precision are also highlighted. (C) 2020 The Author(s). Published by Elsevier B.V.
机译:具有各种生物分子的合成聚合物的共轭提供了对生物中的材料,可以易于与合成世界和自然的优势相结合。由于合成工具的快速发展和深化生物分子结构和功能的理解,这些聚合物生物缀合物不仅适用于生物医学应用,而且还可以作为材料科学的创新构建。本综述总结了将结构定义的聚合物生物缀合物的选择及其应用作为制备分层生物冬冬胺材料的结构块。从这个角度来看,我们讨论和说明最近的突破,描绘了该领域可能会如何发展的突破。我们首先介绍了用于构建精密聚合物生物缀合物的一般合成方法。提出了各种化学物种,用于控制聚合物的尺寸,分布,拓扑和功能的不同方法,以及生物缀合物结构的多功能操纵。随后,单独讨论基于包括蛋白质/肽,核酸,碳水化合物,脂质和甚至活细胞的不同生物实体的最近聚合物生物缀合物的预处理。特别地,我们专注于不同长度尺度的各种形式的良好定义的构建体,从精密聚合物和纳米结构通过生物分子模板塑造成高度有序的聚合物生物缀合物的溶液中的高度有序的组装,在块状和表面上。这些生物冬小人的一些代表性应用是由其高度结构精度产生的。 (c)2020提交人。 elsevier b.v出版。

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