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丝素蛋白 3D 支架的制备及生物相容性评价。

Preparation and Biocompatibility Characterization of Silk Fibroin 3D Scaffolds.

出版信息

ACS Appl Bio Mater. 2021 Feb 15;4(2):1369-1380. doi: 10.1021/acsabm.0c01239. Epub 2021 Jan 26.

Abstract

In this paper, three different mass fractions of sodium carbonate were used for degumming to obtain different degrees of damaged silk fibroin fibers, which were then treated with formic acid to shrink and bond them into 3D scaffolds. The structure and performance of silk fibroin fibers and silk fibroin 3D scaffolds were characterized by scanning electron microscopy, infrared spectroscopy, X-ray diffraction, a differential thermal scanner, a universal materials testing machine, and laser confocal microscopy, and the degradation performance was tested by protease degradation. The results showed that an excessive mass fraction of sodium carbonate would cause partial hydrolysis of fibroin fibers, decrease the mechanical properties of fibroin fiber, increase the surface roughness of fibroin fibers, and make mouse embryonic fibroblasts easier to adhere and grow. Silk fibroin fibers were slightly dissolved, shrunk, and dispersed in formic acid. The mass fraction of sodium carbonate can adjust the enzymatic degradation rate of the silk fibroin 3D scaffolds. With the extension of the degradation time, minerals will be deposited on the surface of the scaffolds. The results show that the silk fibroin 3D scaffolds have biocompatibility, mechanical properties, and degradability, which provides a good material for a barrier biofilm in the future.

摘要

本文使用三种不同质量分数的碳酸钠进行脱胶,得到不同程度损伤的丝素纤维,然后用甲酸处理使纤维收缩并结合成 3D 支架。通过扫描电子显微镜、红外光谱、X 射线衍射、差示热扫描仪、万能材料试验机和激光共聚焦显微镜对丝素纤维和丝素 3D 支架的结构和性能进行了表征,并通过蛋白酶降解测试了其降解性能。结果表明,碳酸钠的质量分数过高会导致丝素纤维部分水解,降低丝素纤维的力学性能,增加丝素纤维的表面粗糙度,使小鼠胚胎成纤维细胞更容易附着和生长。丝素纤维在甲酸中轻微溶解、收缩和分散。碳酸钠的质量分数可以调节丝素 3D 支架的酶降解速率。随着降解时间的延长,矿物质将在支架表面沉积。结果表明,丝素 3D 支架具有生物相容性、机械性能和可降解性,为未来的屏障生物膜提供了一种良好的材料。

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