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Biocompatibility Assessment of PLCL-Sericin Copolymer Membranes Using Whartons Jelly Mesenchymal Stem Cells

机译:沃顿氏胶质间充质干细胞对PLCL-丝氨酸共聚物膜的生物相容性评估

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摘要

Stem cells based tissue engineering requires biocompatible materials, which allow the cells to adhere, expand, and differentiate in a large scale. An ideal biomaterial for clinical application should be free from mammalian products which cause immune reactivities and pathogen infections. We invented a novel biodegradable poly(L-lactic-co-ε-caprolactone)-sericin (PLCL-SC) copolymer membrane which was fabricated by electrospinning. Membranes with concentrations of 2.5 or 5% (w/v) SC exhibited qualified texture characteristics with a noncytotoxic release profile. The hydrophilic properties of the membranes were 35–40% higher than those of a standard PLCL and commercial polystyrene (PS). The improved characteristics of the membranes were due to an addition of new functional amide groups, C=O, N–H, and C–N, onto their surfaces. Degradation of the membranes was controllable, depending on the content proportion of SC. Results of thermogram indicated the superior stability and crystallinity of the membranes. These membranes enhanced human Wharton's jelly mesenchymal stem cells (hWJMSC) proliferation by increasing cyclin A and also promoted cell adhesion by upregulating focal adhesion kinase (FAK). On the membranes, hWJMSC differentiated into a neuronal lineage with the occurrence of nestin. These data suggest that PLCL-SC electrospun membrane represents some properties which will be useful for tissue engineering and medical applications.
机译:基于干细胞的组织工程需要生物相容性材料,该材料可使细胞大规模粘附,扩增和分化。临床上理想的生物材料应不含引起免疫反应和病原体感染的哺乳动物产品。我们发明了一种新型的可生物降解的聚(L-乳酸-co-ε-己内酯)-丝氨酸(PLCL-SC)共聚物膜,该膜是通过电纺丝制备的。浓度为2.5或5%(w / v)SC的膜表现出合格的质地特征,且无细胞毒性释放曲线。膜的亲水性比标准PLCL和市售聚苯乙烯(PS)高35–40%。膜特性的改善是由于在其表面增加了新的酰胺基团C = O,NH和CN。膜的降解是可控制的,取决于SC的含量比例。热分析图的结果表明膜具有优异的稳定性和结晶性。这些膜通过增加细胞周期蛋白A来增强人沃顿氏胶质间充质干细胞(hWJMSC)的增殖,并通过上调粘着斑激酶(FAK)促进细胞粘附。在膜上,hWJMSC随巢蛋白的出现而分化为神经元谱系。这些数据表明,PLCL-SC电纺膜具有某些特性,可用于组织工程和医学应用。

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