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Strategies to Fabricate Polypeptide-Based Structures via Ring-Opening Polymerization of N-Carboxyanhydrides

机译:通过开环聚合N-羧基氢化物制备基于多肽的结构的策略

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摘要

In this review, we provide a general and clear overview about the different alternatives reported to fabricate a myriad of polypeptide architectures based on the ring-opening polymerization of -carbonyanhydrides (ROP NCAs). First of all, the strategies for the preparation of NCA monomers directly from natural occurring or from modified amino acids are analyzed. The synthetic alternatives to prepare non-functionalized and functionalized NCAs are presented. Protection/deprotection protocols, as well as other functionalization chemistries are discussed in this section. Later on, the mechanisms involved in the ROP NCA polymerization, as well as the strategies developed to reduce the eventually occurring side reactions are presented. Finally, a general overview of the synthetic strategies described in the literature to fabricate different polypeptide architectures is provided. This part of the review is organized depending on the complexity of the macromolecular topology prepared. Therefore, linear homopolypeptides, random and block copolypeptides are described first. The next sections include cyclic and branched polymers such as star polypeptides, polymer brushes and highly branched structures including arborescent or dendrigraft structures.
机译:在这篇综述中,我们提供了有关报道的基于碳酰氢化物(ROP NCA)开环聚合制造无数多肽结构的不同选择的一般清晰的概述。首先,分析了直接从天然存在的氨基酸或修饰的氨基酸制备NCA单体的策略。介绍了制备非功能化和功能化NCA的合成方法。本节讨论了保护/脱保护方案以及其他功能化化学方法。稍后,介绍了ROP NCA聚合所涉及的机理,以及为减少最终发生的副反应而开发的策略。最后,提供了文献中描述的用于合成不同多肽结构的合成策略的概述。审查的这一部分根据所准备的大分子拓扑的复杂性来组织。因此,首先描述线性同多肽,无规和嵌段共多肽。下一部分包括环状和分支聚合物,例如星形多肽,聚合物刷和高度分支的结构,包括树状或树状接枝结构。

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