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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >In vitro biocompatibility study of a water-rinsed biomimetic silk porous scaffold with olfactory ensheathing cells
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In vitro biocompatibility study of a water-rinsed biomimetic silk porous scaffold with olfactory ensheathing cells

机译:用嗅鞘细胞进行水冲洗仿生丝多孔支架的体外生物相容性研究

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摘要

Olfactory ensheathing cells (OECs) are one of the most promising candidates for cell-based therapy in repairing spinal cord injury (SCI). However, the conventional method of transplanting OECs, orthotopically or intrathecally, leads to a low rate of cell replacement and limited utilization due to the impediments of chemical and physical barriers after SCI. In this study, we fabricated a three-dimensional (3-D) silk fibroin (SF) scaffold with a novel water-rinsing process. Compared to traditional methanol-treated scaffolds (MTS) and ethanol-treated scaffolds (ETS), the present water-rinsed scaffold (WRS) had a biomimetic nanofibrous structure and softer mechanical properties and was shown to be more biocompatible with OECs. The in vitro study showed that the 3-D SF scaffolds supported OEC adhesion and spreading and that the OECs had a normal cell phenotype. A quantitative study using the CCK8 assay revealed that OEC proliferation on the WRS was higher than that on the MTS and ETS. Moreover, a significantly higher level of GDNF was detected when the OECs were cultured on the WRS. Collectively, these results suggested that the 3-D biomimetic SF porous scaffolds not only provide suitable microenvironments for governing OEC behaviour but also serve as a promising transplantation strategy for OECs to repair SCI. (C) 2018 Published by Elsevier B.V.
机译:嗅鞘细胞(OECs)是修复脊髓损伤(SCI)的基于细胞疗法最有希望的候选人之一。然而,由于在SCI后化学和物理障碍的障碍而导致常规移植OECs的方法,导致细胞更换和限制利用率。在这项研究中,我们用新的水漂洗方法制造了一种三维(3-D)丝素蛋白(SF)支架。与传统的甲醇处理的支架(MTS)和乙醇处理的支架(ETS)相比,本发明的水冲洗支架(WRS)具有仿生纳米纤维结构和更柔软的机械性能,并且显示出与OEC的更生物相容性。体外研究表明,3-D SF支架支撑了OEC粘附和扩散,并且OECs具有正常的细胞表型。使用CCK8测定的定量研究表明,WRS上的OEC增殖高于MTS和ETS上的OEC增殖。此外,当在WRS上培养OEC时,检测到显着更高水平的GDNF。总的来说,这些结果表明,3-D生物染色的SF多孔支架不仅提供适合用于控制OEC行为的微环境,而且还可以作为OEC进行修复SCI的有望移植策略。 (c)2018由elestvier b.v出版。

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