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α-Amino Acid Containing Degradable Polymers as Functional Biomaterials: Rational Design, Synthetic Pathway, and Biomedical Applications

机译:含α-氨基酸的可降解聚合物作为功能性生物材料:合理设计,合成途径和生物医学应用

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摘要

Currently, biomedical engineering is rapidly expanding, especially in the areas of drug delivery, gene transfer, tissue engineering, and regenerative medicine. A prerequisite for further development is the design and synthesis of novel multifunctional biomaterials that are biocompatible and biologically active, are biodegradable with a controlled degradation rate, and have tunable mechanical properties. In the past decades, different types of α-amino acid-containing degradable polymers have been actively developed with the aim to obtain biomimicking functional biomaterials. The use of α-amino acids as building units for degradable polymers may offer several advantages: (i) imparting chemical functionality, such as hydroxyl, amine, carboxyl, and thiol groups, which not only results in improved hydrophilicity and possible interactions with proteins and genes, but also facilitates further modification with bioactive molecules (e.g., drugs or biological cues); (ii) possibly improving materials biological properties, including cell—materials interactions (e.g., cell adhesion, migration) and degradability; (iii) enhancing thermal and mechanical properties; and (iv) providing metabolizable building units/blocks. In this paper, recent developments in the field of α-amino acid-containing degradable polymers are reviewed. First, synthetic approaches to prepare α-amino acid-containing degradable polymers will be discussed. Subsequently, the biomedical applications of these polymers in areas such as drug delivery, gene delivery and tissue engineering will be reviewed. Finally, the future perspectives of a-amino acid-containing degradable polymers will be evaluated.
机译:当前,生物医学工程学正在迅速扩展,特别是在药物输送,基因转移,组织工程学和再生医学领域。进一步开发的先决条件是设计和合成新型的多功能生物材料,这些材料具有生物相容性和生物活性,可以在受控的降解速率下进行生物降解,并且具有可调的机械性能。在过去的几十年中,已经积极地开发了不同类型的含α-氨基酸的可降解聚合物,目的是获得仿生物的功能性生物材料。将α-氨基酸用作可降解聚合物的结构单元可能具有以下优点:(i)赋予化学官能度,例如羟基,胺基,羧基和硫醇基,不仅可以改善亲水性,还可以与蛋白质和蛋白质相互作用。基因,但也有助于进一步利用生物活性分子(例如,药物或生物线索)进行修饰; (ii)可能改善材料的生物学特性,包括细胞与材料的相互作用(例如,细胞粘附,迁移)和降解性; (iii)增强热和机械性能; (iv)提供可代谢的建筑单元/模块。在本文中,综述了含α-氨基酸的可降解聚合物领域的最新进展。首先,将讨论制备含α-氨基酸的可降解聚合物的合成方法。随后,将审查这些聚合物在药物输送,基因输送和组织工程等领域的生物医学应用。最后,将评估含α-氨基酸的可降解聚合物的未来前景。

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