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聚天冬氨酸衍生可生物降解聚电解质和聚电解质复合物的新兴生物医学应用。

Emerging biomedical applications of polyaspartic acid-derived biodegradable polyelectrolytes and polyelectrolyte complexes.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Bhauri, Bhopal By-pass Road, Bhopal-462066, India.

出版信息

J Mater Chem B. 2019 Apr 7;7(13):2102-2122. doi: 10.1039/c8tb02962h. Epub 2019 Mar 4.

Abstract

Polyelectrolytes (PELs) - polymers with charged repeat units - have emerged as a useful class of polymers for biomedical applications due to their high aqueous solubility, low aggregation propensity and the opportunity they afford for polyvalent interactions with surfaces. Biodegradability and biocompatibility of PELs are important prerequisites for their utilization in in vivo applications. PELs that can be chemically functionalized with ease prove advantageous for creating diverse biomaterials. Polyaspartic acid (PASA) is a modular and biocompatible synthetic PEL that has all these features. It also shows many positive biomedical attributes such as bone-tissue targeting, muco-adhesive behavior and extended blood circulation time. Cationic PELs derived from PASA are rapidly internalized by mammalian and bacterial cells, and hence have immense utility in therapeutic delivery applications. Polyelectrolyte complexes (PECs) and multilayers (PEMs) formed from PASA PELs have further expanded their biomedical utility. This mini-review highlights some recent literature examples of unique biomedical applications of PELs, PECs and PEMs prepared through the molecular engineering of PASA. It discusses biomineralization modulators, anti-mycobacterial agents, underwater adhesives, mucoadhesive drug and gene delivery agents, and cell encapsulants fabricated using PASA derived PELs.

摘要

聚电解质(PELs)-具有带电重复单元的聚合物-由于其高水溶性、低聚集倾向以及与表面形成多价相互作用的机会,已成为生物医学应用中一种有用的聚合物。PELs 的生物降解性和生物相容性是其在体内应用的重要前提。易于化学功能化的 PEL 对于创造多样化的生物材料具有优势。聚天冬氨酸(PASA)是一种模块化和生物相容的合成 PEL,具有所有这些特性。它还具有许多积极的生物医学属性,如骨组织靶向、粘弹性行为和延长血液循环时间。源自 PASA 的阳离子 PEL 被哺乳动物和细菌细胞迅速内化,因此在治疗药物递送应用中具有巨大的用途。由 PASA PEL 形成的聚电解质复合物(PECs)和多层(PEMs)进一步扩大了它们的生物医学用途。这篇小型综述强调了通过 PASA 的分子工程制备的 PELs、PECs 和 PEMs 的一些最近文献中独特的生物医学应用的例子。它讨论了生物矿化调节剂、抗分枝杆菌剂、水下粘合剂、粘弹性药物和基因递送剂,以及使用 PASA 衍生的 PEL 制造的细胞封装剂。

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