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Bulk and Nanoscale Polypeptide Based Polyelectrolyte Complexes

机译:体和纳米级多肽基聚电解质复合物

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摘要

Polyelectrolyte complexes (PECs) formed using polypeptides have great potential for developing new self-assembled materials, in particular for the development of drug and gene delivery vehicles. This review discusses the latest advancements in PECs formed using polypeptides as the polyanion and/or the polycation in both polyelectrolyte complexes that form bulk materials and block copolymer complexes that form nanoscale assemblies such as PEC micelles and other self-assembled structures. We highlight the importance of secondary structure formation between homogeneous polypeptide complexes, which, unlike PECs formed using other polymers, introduces additional intermolecular interactions in the form of hydrogen bonding, which may influence precipitation over coacervation. However, we still include heterogeneous complexes consisting of polypeptides and other polymers such as nucleic acids, sugars, and other synthetic polyelectrolytes. Special attention is given to complexes formed using nucleic acids as polyanions and polypeptides as polycations and their potential for delivery applications.
机译:使用多肽形成的聚电解质复合物(PEC)在开发新的自组装材料,特别是开发药物和基因传递载体方面具有巨大潜力。这篇综述讨论了使用多肽作为聚阴离子和/或聚阳离子在形成本体材料的聚电解质复合物和形成纳米级组装体(例如PEC胶束和其他自组装结构)的嵌段共聚物复合体中形成的PEC的最新进展。我们强调同质多肽复合物之间形成二级结构的重要性,这与使用其他聚合物形成的PEC不同,它以氢键形式引入了额外的分子间相互作用,这可能会影响凝聚过程中的沉淀。但是,我们仍然包括由多肽和其他聚合物(例如核酸,糖和其他合成的聚电解质)组成的异质复合物。特别注意使用核酸作为聚阴离子和多肽作为聚阳离子形成的复合物及其在递送应用中的潜力。

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