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具有取向纤维的电纺丝素蛋白-聚己内酯支架的力学性能和生物学性能

Mechanical property and biological performance of electrospun silk fibroin-polycaprolactone scaffolds with aligned fibers.

作者信息

Yuan Han, Shi Hongfei, Qiu Xushen, Chen Yixin

机构信息

a Drum Tower Clinical College of Integrative Medicine , Nanjing University of Chinese Medicine , Nanjing , China.

b Department of Orthopedics, Nanjing Drum Tower Hospital , The Affiliated Hospital of Nanjing University Medical School , Nanjing , China.

出版信息

J Biomater Sci Polym Ed. 2016;27(3):263-75. doi: 10.1080/09205063.2015.1120475. Epub 2015 Dec 29.

Abstract

The mechanical strength, biocompatibility, and sterilizability of silk fibroin allow it to be a possible candidate as a natural bone regenerate material. To improve mechanical character and reinforce the cell movement induction, silk fibroin (SF)-polycaprolactone (PCL) alloy was fabricated by electrospinning techniques with a rotating collector to form aligned fibrous scaffolds and random-oriented scaffolds. The scanning electron microscope image of the scaffold and the mechanical properties of the scaffold were investigated by tensile mechanical tests, which were compared to random-oriented scaffolds. Furthermore, mesenchymal stem cells were planted on these scaffolds to investigate the biocompatibility, elongation, and cell movement in situ. Scanning electron microscopy shows that 91% fibers on the aligned fibroin scaffold were distributed between the dominant direction ±10°. With an ideal support for stem cell proliferation in vitro, the aligned fibrous scaffold induces cell elongation at a length of 236.46 ± 82 μm and distribution along the dominant fiber direction with a cell alignment angle at 6.57° ± 4.45°. Compared with random-oriented scaffolds made by artificial materials, aligned SF-PCL scaffolds could provide a moderate mesenchymal stem cell engraftment interface and speed up early stage cell movement toward the bone defect.

摘要

丝素蛋白的机械强度、生物相容性和可灭菌性使其有可能成为天然骨再生材料的候选者。为了改善机械性能并增强细胞运动诱导能力,采用旋转收集器通过静电纺丝技术制备了丝素蛋白(SF)-聚己内酯(PCL)合金,以形成排列的纤维支架和随机取向的支架。通过拉伸力学试验研究了支架的扫描电子显微镜图像和机械性能,并与随机取向的支架进行了比较。此外,将间充质干细胞接种在这些支架上,以研究其生物相容性、伸长情况和原位细胞运动。扫描电子显微镜显示,排列的丝素蛋白支架上91%的纤维分布在主方向±10°之间。排列的纤维支架在体外对干细胞增殖具有理想的支持作用,可诱导细胞伸长至236.46±82μm的长度,并沿主纤维方向分布,细胞排列角度为±6.57°±4.45°。与人工材料制成的随机取向支架相比,排列的SF-PCL支架可提供适度的间充质干细胞植入界面,并加速早期细胞向骨缺损处的移动。

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