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首页> 外文期刊>Progress in Polymer Science >Functional polypeptide and hybrid materials: Precision synthesis via cu-amino acid N-carboxyanhydride polymerization and emerging biomedical applications
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Functional polypeptide and hybrid materials: Precision synthesis via cu-amino acid N-carboxyanhydride polymerization and emerging biomedical applications

机译:功能性多肽和杂合材料:通过铜氨基酸N-羧酸酐聚合反应的精确合成和新兴的生物医学应用

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摘要

Polypeptides derived from naturally occurring α-amino acids have emerged as a unique and versatile family of bio-inspired biomaterials that can be tailor-made for varying biomedical applications such as controlled drug release, gene delivery, tissue engineering and regenerative medicine. In contrast to traditional biodegradable polymers such as aliphatic polyesters and polycarbonates, polypeptides are inherently functional, allow precise control over polarity and charges, show excellent stability against hydrolysis, and are prone to rapid biodegradation in vivo by specific enzymes. Ring-opening polymerization (ROP) of α-amino acid N-carboxyanhydrides (NCAs) is the most straightforward and practical approach for large-scale production of high molecular weight polypeptides. In the past decade, a remarkable progress has been made in controlled NCA polymerization, which offers an unprecedented access to precision polypeptide and hybrid materials by combining with living radical polymerization, click chemistry, and/or post-polymerization modification. Notably, several micellar anti-cancer drugs based on poly(ethylene glycol)-polypeptides have been already advanced to the clinical evaluation. In this review paper, we give an overview on de novo design, controlled synthesis and emerging biomedical applications of functional polypeptide and hybrid materials.
机译:衍生自天然α-氨基酸的多肽已成为一种独特且用途广泛的受生物启发的生物材料,可以为各种生物医学应用量身定制,例如受控药物释放,基因递送,组织工程和再生医学。与传统的可生物降解的聚合物(例如脂族聚酯和聚碳酸酯)相比,多肽具有固有的功能,可以精确控制极性和电荷,显示出出色的抗水解稳定性,并且易于在体内被特定的酶快速生物降解。 α-氨基酸N-羧基酸酐(NCA)的开环聚合(ROP)是大规模生产高分子量多肽的最直接,最实用的方法。在过去的十年中,可控NCA聚合取得了显着进展,通过与活性自由基聚合,点击化学和/或后聚合修饰相结合,提供了前所未有的获得精密多肽和杂化材料的途径。值得注意的是,几种基于聚(乙二醇)-多肽的胶束抗癌药已经被推进临床评估。在这篇综述文章中,我们概述了功能多肽和杂种材料的从头设计,受控合成和新兴生物医学应用。

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