用于肝细胞培养的三维硫酸细菌纤维素/明胶复合支架。

IF 10.5 Q1 ENGINEERING, BIOMEDICAL Cyborg and bionic systems (Washington, D.C.) Pub Date : 2023-01-01 DOI:10.34133/cbsystems.0021
Xinmeng Li, Weixiao Ding, Shujun Wang, Luyu Yang, Qingqing Yu, Changji Xiao, Guangbo Chen, Lei Zhang, Shanyue Guan, Dongping Sun
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引用次数: 4

摘要

肝脏是人体新陈代谢的中枢,与许多疾病有关。为了更好地研究肝脏疾病的机制和治疗,设计适合体外培养肝细胞的三维支架来模拟其代谢和再生能力是一个特别感兴趣的问题。本研究利用肝细胞外基质的阴离子性质和三维结构,制备硫酸酸化细菌纤维素(SBC)作为细胞支架的构建块,并通过改变反应时间,优化其硫酸盐酯化反应条件。对sbc的微观形态、结构和细胞相容性的分析研究表明,sbc具有良好的生物相容性,符合组织工程的要求。接下来,将SBC与明胶混合制成复合支架(SBC/Gel),采用均质和冷冻干燥的方法培养肝细胞,将其孔径、孔隙度、压缩性能等物理性能与明胶(Gel)支架作为对照组进行比较,考察复合支架的细胞学活性和血液相容性。结果表明,SBC/Gel复合材料具有较好的孔隙和压缩性能,以及良好的细胞相容性和血液相容性,可用于肝细胞的三维培养,用于药物筛选或肝组织工程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Three-Dimensional Sulfated Bacterial Cellulose/Gelatin Composite Scaffolds for Culturing Hepatocytes.

The liver is the hub of human metabolism and involves many diseases. To better work on the mechanism and treatment of liver diseases, it is of particular interest to design 3-dimensional scaffolds suitable for culturing hepatocytes in vitro to simulate their metabolic and regenerative abilities. In this study, sulfated bacterial cellulose (SBC) was prepared as the building block of cell scaffolds, motivated by the anionic nature and 3-dimensional structure of hepatic extracellular matrix, and its reaction condition for sulfate esterification was optimized by changing the reaction time. The analysis and study of the microscopic morphology, structure, and cytocompatibility of SBCs showed that they possess good biocompatibility and meet the requirements for tissue engineering. Next, SBC was mixed with gelatin for composite scaffolds (SBC/Gel) for culturing hepatocytes by homogenization and freeze-drying methods, whose physical properties such as pore size, porosity, and compression properties were compared with gelatin (Gel) scaffolds as the control group, and the cytological activity and hemocompatibility of the composite scaffolds were investigated. The results showed that the SBC/Gel composite has better porosity and compression properties, as well as good cytocompatibility and hemocompatibility, and could be applied to 3-dimensional culture of hepatocytes for drug screening or liver tissue engineering.

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CiteScore
7.70
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审稿时长
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