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用于药物输送和组织工程应用的基于聚(二醇-共-三羟甲基丙烷碳酸酯)的热交联弹性体的合成、表征和细胞相容性。

Synthesis, characterization & cytocompatibility of poly (diol-co-tricarballylate) based thermally crosslinked elastomers for drug delivery & tissue engineering applications.

机构信息

Pharmaceutics & Polymeric Drug Delivery Research Laboratory, Department of Pharmaceutical Sciences, College of Pharmacy, Qatar University, PO Box 2713, Doha, Qatar.

School of Cellular and Molecular Medicine, Faculty of Biomedical Sciences, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

Mater Sci Eng C Mater Biol Appl. 2018 Dec 1;93:254-264. doi: 10.1016/j.msec.2018.07.028. Epub 2018 Jul 17.

Abstract

The aim of this study was to investigate the synthesis and in vitro characterization of thermoset biodegradable poly (diol-co-tricarballylate) (PDT) elastomeric polymers for the purpose of their use in implantable drug delivery and tissue engineering applications. The synthesis was based on thermal crosslinking technique via a polycondensation reaction of tricarballylic acid with aliphatic diols of varying chain lengths (C6-C12). PDT prepolymers were synthesized at 140 °C for 20 min. After purification, the prepolymers were molded and kept at 120 °C for 18 h under vacuum to complete the crosslinking process. PDT prepolymers were characterized by DSC, FT-IR, H NMR and GPC. The PDT elastomers were also subjected to thermal and structural analysis, as well as sol content, mechanical testing, in vitro degradation and cytocompatibility studies. The mechanical properties and sol content were found to be dependent on synthesis conditions and can be controlled by manipulating the crosslinking density and number of methylene groups in the chain of precursor aliphatic diol. The family of thermally crosslinked PDT biodegradable polyesters were successfully prepared and characterized; besides they have promising use in drug delivery and other biomedical tissue engineering applications.

摘要

本研究旨在探索热固性可生物降解聚(二醇-共-三羟甲基丙烷)(PDT)弹性体聚合物的合成及其体外特性,以期将其应用于可植入药物输送和组织工程领域。该合成基于热交联技术,通过三羟甲基丙烷与不同链长的脂肪族二醇(C6-C12)的缩聚反应进行。PDT 预聚物在 140°C 下反应 20 分钟。纯化后,将预聚物模制并在 120°C 下真空保持 18 小时,以完成交联过程。通过 DSC、FT-IR、H NMR 和 GPC 对 PDT 预聚物进行了表征。还对 PDT 弹性体进行了热和结构分析以及溶胶含量、力学性能测试、体外降解和细胞相容性研究。力学性能和溶胶含量取决于合成条件,可以通过改变交联密度和前驱体脂肪族二醇链中的亚甲基数量来控制。成功制备和表征了一系列热交联 PDT 可生物降解聚酯;除了在药物输送和其他生物医学组织工程应用中有广阔的应用前景。

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