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聚对二氧环己酮/聚(丙交酯-乙交酯)/聚(琥珀酸乙二酯-乙交酯)的生物相容性、热性能及体外模拟降解性能

Biological compatibility, thermal and in vitro simulated degradation for poly(p-dioxanone)/poly(lactide-co-glycolide)/poly(ethylene succinate-co-glycolide).

作者信息

Zhong Gang, Liu Yihao, Liu Canpei, Li Xu, Lin Jingwei, Lanzon Alain Luigi, Zhang Huagui, Chen Mingfeng

机构信息

College of Chemistry and Materials Science, Fujian Key Laboratory of Polymer Science, Fujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Fujian Normal University, Fuzhou, China.

Department of Thoracic Surgery, First Affiliated Hospital of Fujian Medical University, Fuzhou, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2021 Nov;109(11):1817-1835. doi: 10.1002/jbm.b.34842. Epub 2021 Apr 24.

DOI:10.1002/jbm.b.34842
PMID:33894107
Abstract

Bio-absorbable polymers are widely desired to be applied and used as biomaterials for surgery hemostatic and medical tissue engineering devices. Ring-opening copolymerization reaction was applied to synthesize poly(ethylene succinate-co-glycolide) (PES-b-PGA). Stannous octoate was used as a catalyst whereas poly(ethylene succinate) was used as a macro-initiator to react with glycolide. PES-b-PGA was then used as a compatibilizer to prepare the blend biomaterial of PPDO/PLGA/PES-b-PGA by melt blending poly(p-dioxanone) (PPDO) with poly(lactide-co-glycolide) (PLGA). This would enhance the interactions of the inter-molecular chains and intra-molecular segments thus improving the compatibility. To obtain the biomaterial of PPDO/PLGA/PES-b-PGA with a regulated and controlled degradation and/or hydrolysis period, various ratios of PPDO, PLGA, and PES-b-PGA was blended. Behaviors of the thermal and in vitro simulated degradation, biological compatibility, cytotoxicity and subcutaneous implantation of PPDO/PLGA/PES-b-PGA were investigated. The results show that the in vitro hydrolytic degradation cycle is consistent with the wound healing time and that the biomaterial has slight cytotoxicity and it will do good to the cell proliferation, with 1 grade of cytotoxicity and the relative growth rate being the range from 92.5% to 96.2%. The implantation of the biomaterial into the rabbits' ears will not adversely affect the wound healing and the tissues surrounding the implanted sites. Therefore, the biomaterial has good biocompatibility and potential applications in medical tissue engineering devices.

摘要

生物可吸收聚合物作为手术止血和医用组织工程装置的生物材料,具有广泛的应用需求。采用开环共聚反应合成聚(琥珀酸乙烯酯 - 共 - 乙交酯)(PES - b - PGA)。以辛酸亚锡为催化剂,聚(琥珀酸乙烯酯)为大分子引发剂与乙交酯反应。然后将PES - b - PGA用作增容剂,通过将聚对二氧环己酮(PPDO)与聚(丙交酯 - 共 - 乙交酯)(PLGA)熔融共混制备PPDO/PLGA/PES - b - PGA共混生物材料。这将增强分子间链和分子内链段的相互作用,从而提高相容性。为获得具有可控降解和/或水解周期的PPDO/PLGA/PES - b - PGA生物材料,将不同比例的PPDO、PLGA和PES - b - PGA进行共混。研究了PPDO/PLGA/PES - b - PGA的热行为、体外模拟降解、生物相容性、细胞毒性和皮下植入情况。结果表明,体外水解降解周期与伤口愈合时间一致,该生物材料具有轻微细胞毒性,对细胞增殖有促进作用,细胞毒性为1级,相对生长率在92.5%至96.2%之间。将该生物材料植入兔耳不会对伤口愈合和植入部位周围组织产生不利影响。因此,该生物材料具有良好的生物相容性,在医用组织工程装置中具有潜在应用价值。

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