首页> 外文期刊>Journal of Neurorestoratology >In vitro study of neural stem cells and activated Schwann cells cocultured on electrospinning polycaprolactone scaffolds
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In vitro study of neural stem cells and activated Schwann cells cocultured on electrospinning polycaprolactone scaffolds

机译:在静电纺丝聚己内酯支架上共培养神经干细胞和活化的雪旺氏细胞的体外研究

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Background: To investigate the biocompatibility of electrospinning polycaprolactone (PCL) fiber scaffolds and coculture system, which consisted of neural stem cells (NSCs) and activated Schwann cells (ASCs). Materials and methods: ASCs were isolated from sciatic nerves, ligated for 7 days, in 4-week-old Wistar rats, and the NSCs were isolated from the hippocampus of E14.5 Wistar rat embryos. ASCs, NSCs and ASCs combined with NSCs were 3D cultured on the electrospinning PCL fiber scaffolds. Crystal violet staining was used to find the suitable density of ASCs for growth, and the proliferation of NSCs and ASCs were tested by Cell Counting Kit (CCK)-8 assay, and cell adhesion, differentiation of NSCs and myelin basic protein (MBP) expression of ASCs were observed by laser confocal microscopy. Distribution and morphology were assessed by scanning electron microscopy. Results: The average diameter of fibers in electrospinning PCL scaffolds was approximately 7.93±1.41 μm. ASCs could grow well at the density of 2×104/cm2, and a certain number of cells extended along the longitudinal axis of fibers, and the shape of the cells was spindle, which was consistent with crystal violet staining results. The CCK-8 experiment showed ASCs could proliferate gradually on the PCL scaffold within 7 days, as well as NSCs, and NSCs differentiated into astrocytes, neurons and oligodendrocytes on the PCL scaffold; PCL scaffolds could improve the differentiation rate of neurons. After NSCs and ASCs were cocultured on electrospinning PCL scaffolds, ASCs could express MBP and NSCs could differentiate into neurons, which distributed around those ASCs expressing MBP. Conclusion: Electrospinning PCL fibrous scaffolds showed good biocompatibility, and the fibers had an inducing effect on the distribution of ASCs. NSCs and ASCs cultured on electrospinning PCL scaffolds could form 3D culture system, and NSCs could differentiate into neurons which distributed around the ASCs expressing MBP.
机译:背景:研究静电纺丝聚己内酯(PCL)纤维支架和共培养系统的生物相容性,该系统由神经干细胞(NSC)和活化的雪旺细胞(ASC)组成。材料和方法:在4周龄的Wistar大鼠中,从坐骨神经中分离ASC,结扎7天,并从E14.5 Wistar大鼠胚胎的海马中分离出NSC。在静电纺丝PCL纤维支架上3D培养ASC,NSC和与NSC结合的ASC。结晶紫染色用于寻找适合生长的ASC密度,并通过细胞计数试剂盒(CCK)-8分析检测NSC和ASC的增殖,以及细胞粘附,NSC分化和髓鞘碱性蛋白(MBP)表达通过激光共聚焦显微镜观察ASCs的变化。通过扫描电子显微镜评估分布和形态。结果:静电纺丝PCL支架中纤维的平均直径约为7.93±1.41μm。 ASCs可以在2×10 4 / cm 2 的密度下生长良好,并且一定数量的细胞沿着纤维的纵轴延伸,并且细胞的形状是纺锤体,与结晶紫染色结果一致。 CCK-8实验表明,ASCs和NSCs可以在7天内在PCL支架上逐渐增殖,并且NSCs在PCL支架上分化为星形胶质细胞,神经元和少突胶质细胞。 PCL支架可以提高神经元的分化率。在静电纺丝PCL支架上共培养NSC和ASC之后,ASC可以表达MBP,而NSC可以分化为神经元,分布在表达MBP的ASC周围。结论:静电纺丝PCL纤维支架具有良好的生物相容性,且纤维对ASCs的分布具有诱导作用。在静电纺丝PCL支架上培养的NSC和ASC可以形成3D培养系统,并且NSC可以分化为神经元,分布在表达MBP的ASC周围。

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