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用于潜在组织工程应用的具有结构泡沫壁微结构的仿生聚乙烯醇基质的设计与表征

Design and Characterization of a Bioinspired Polyvinyl Alcohol Matrix with Structural Foam-Wall Microarchitectures for Potential Tissue Engineering Applications.

作者信息

Huang Ching-Cheng

机构信息

Department of Biomedical Engineering, Ming-Chuan University, Guishan District, Taoyuan 320-33, Taiwan.

PARSD Biomedical Material Research Center, Xitun District, Taichung 407-49, Taiwan.

出版信息

Polymers (Basel). 2022 Apr 13;14(8):1585. doi: 10.3390/polym14081585.

Abstract

Traditional medical soft matrix used in a surgical treatment or in wound management was not good enough in both the structural support and interconnectivity to be applied in tissue engineering as a scaffold. Avian skeleton and feather rachises might be good reference objects to mimic in designing a scaffold material with good structural support and high interconnectivity because of its structural foam-wall microarchitectures and structural pneumaticity. In this study, a biomimetic airstream pore-foaming process was built up and the corresponding new medical soft matrix derived from polyvinyl alcohol matrix (PVAM) with air cavities inspired by avian skeleton and feather rachises was prepared. Furthermore, the resulting medical soft matrix and bovine Achilles tendon type I collagen could be employed to prepare a new collagen-containing composite matrix. Characterization, thermal stability and cell morphology of the bioinspired PVA matrix and the corresponding collagen-modified PVA composite matrix with open-cell foam-wall microarchitectures were studied for evaluation of potential tissue engineering applications. TGA, DTG, DSC, SEM and FTIR results of new bioinspired PVA matrix were employed to build up the effective system identification approach for biomimetic structure, stability, purity, and safety of target soft matrix. The bioinspired PVA matrix and the corresponding collagen-modified PVA composite matrix would be conductive to human hepatoblastoma HepG2 cell proliferation, migration, and expression which might serve as a promising liver cell culture carrier to be used in the biological artificial liver reactor.

摘要

传统用于外科治疗或伤口处理的医用软质基质,在结构支撑和连通性方面都不足以作为组织工程中的支架使用。禽类骨骼和羽毛轴可能是很好的参考对象,因其具有结构泡沫壁微结构和结构气动性,在设计具有良好结构支撑和高连通性的支架材料时可加以模仿。在本研究中,构建了一种仿生气流孔隙发泡工艺,并制备了一种源自聚乙烯醇基质(PVAM)的新型医用软质基质,其具有受禽类骨骼和羽毛轴启发的气腔。此外,所得医用软质基质与牛跟腱I型胶原蛋白可用于制备一种新型含胶原蛋白复合基质。对具有开孔泡沫壁微结构的仿生PVA基质及相应的胶原蛋白改性PVA复合基质进行表征、热稳定性和细胞形态学研究,以评估其潜在的组织工程应用。利用新型仿生PVA基质的热重分析(TGA)、微商热重分析(DTG)、差示扫描量热法(DSC)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)结果,建立了针对目标软质基质的仿生结构、稳定性、纯度和安全性的有效系统识别方法。仿生PVA基质及相应的胶原蛋白改性PVA复合基质有利于人肝癌HepG2细胞的增殖、迁移和表达,有望作为肝细胞培养载体应用于生物人工肝反应器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec85/9029864/70990fe2dfec/polymers-14-01585-g001.jpg

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