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聚(癸二酸丙二醇酯)在生物医学中的应用-对近期文献的综述。

Poly(Glycerol Sebacate) in Biomedical Applications-A Review of the Recent Literature.

机构信息

Institute of Biomaterials, University Erlangen-Nuremberg, Erlangen, 91058, Germany.

Chair of Biomaterials, University of Bayreuth, Bayreuth, 95447, Germany.

出版信息

Adv Healthc Mater. 2021 May;10(9):e2002026. doi: 10.1002/adhm.202002026. Epub 2021 Mar 17.

Abstract

Poly(glycerol sebacate) (PGS) continues to attract attention for biomedical applications owing to its favorable combination of properties. Conventionally polymerized by a two-step polycondensation of glycerol and sebacic acid, variations of synthesis parameters, reactant concentrations or by specific chemical modifications, PGS materials can be obtained exhibiting a wide range of physicochemical, mechanical, and morphological properties for a variety of applications. PGS has been extensively used in tissue engineering (TE) of cardiovascular, nerve, cartilage, bone and corneal tissues. Applications of PGS based materials in drug delivery systems and wound healing are also well documented. Research and development in the field of PGS continue to progress, involving mainly the synthesis of modified structures using copolymers, hybrid, and composite materials. Moreover, the production of self-healing and electroactive materials has been introduced recently. After almost 20 years of research on PGS, previous publications have outlined its synthesis, modification, properties, and biomedical applications, however, a review paper covering the most recent developments in the field is lacking. The present review thus covers comprehensively literature of the last five years on PGS-based biomaterials and devices focusing on advanced modifications of PGS for applications in medicine and highlighting notable advances of PGS based systems in TE and drug delivery.

摘要

聚(癸二酸丙二醇酯)(PGS)因其优异的性能组合,继续受到生物医学应用的关注。通过甘油和癸二酸的两步缩聚反应常规聚合,通过改变合成参数、反应物浓度或通过特定的化学修饰,可以得到具有广泛物理化学、机械和形态性能的 PGS 材料,适用于各种应用。PGS 已广泛应用于心血管、神经、软骨、骨和角膜组织的组织工程(TE)。基于 PGS 的材料在药物输送系统和伤口愈合中的应用也有很好的记录。PGS 领域的研究和开发仍在继续,主要涉及使用共聚物、杂化和复合材料合成改性结构。此外,最近还引入了自修复和电活性材料的生产。经过近 20 年的 PGS 研究,以前的出版物已经概述了其合成、改性、性能和生物医学应用,然而,缺乏涵盖该领域最新进展的综述文章。因此,本综述全面涵盖了过去五年关于基于 PGS 的生物材料和设备的文献,重点介绍了 PGS 的先进改性在医学中的应用,并强调了 PGS 基系统在 TE 和药物输送方面的显著进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9be/11468981/fbe56cfaf1d9/ADHM-10-2002026-g015.jpg

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