首页> 外文期刊>Journal of biomedical materials research, Part A >Cellular activity of Wharton's Jelly-derived mesenchymal stem cells on electrospun fibrous and solvent-cast film scaffolds
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Cellular activity of Wharton's Jelly-derived mesenchymal stem cells on electrospun fibrous and solvent-cast film scaffolds

机译:沃顿商学院的果冻来源的间充质干细胞在电纺纤维和溶剂铸膜支架上的细胞活性

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摘要

It was shown that topography and surface chemistry of materials influence cell behaviors. In this study, the effects of chemistry and topography of scaffold surface on adhesion, proliferation and differentiation of Wharton's Jelly mesenchymal (WJMSCs) stem cells into motor neurons were investigated. WJMSCs were cultivated in an neurogenic inductive medium on the surface of modified and unmodified polycaprolactone (PCL) electrospun fibrous and solvent-cast film scaffolds. All the scaffolds were characterized according to their ability to support cell attachment and viability by SEM and MTT assay. The expression of motor neuron-specific markers was assayed by real-time PCR after 15days post induction. Results showed that attachment, proliferation and differentiation of WJMSCs into motor neuron-like cells on the nanotopographic surface was higher than that of the cells on the solvent-cast scaffolds. In addition, regardless of their topography, WJMSCs cultured on collagen-coated PCL nanofibrous showed results similar to collagen-coated PCL films. Results suggested that surface chemistry has more impact on WJMSCs behaviour rather than topography. In conclusion, collagen-coated electrospun PCL have potential for being used in neural tissue engineering because of its bioactive and three-dimensional structure which enhance viability and differentiation of WJMSCs. (c) 2015 Wiley Periodicals, Inc.
机译:结果表明,材料的形貌和表面化学影响细胞行为。在这项研究中,研究了支架表面的化学结构和形貌对沃顿氏胶质间充质干细胞向运动神经元的粘附,增殖和分化的影响。 WJMSCs在修饰和未修饰的聚己内酯(PCL)电纺纤维和溶剂流延膜支架的表面上的神经源性诱导培养基中培养。通过SEM和MTT测定,根据它们支持细胞附着的能力和生存力对所有支架进行表征。诱导后15天,通过实时PCR测定运动神经元特异性标志物的表达。结果表明,WJMSCs附着,增殖和分化成纳米形貌表面上的运动神经元样细胞高于溶剂浇铸支架上的细胞。此外,无论其地形如何,在胶原蛋白涂覆的PCL纳米纤维上培养的WJMSC均显示出与胶原蛋白涂覆的PCL膜相似的结果。结果表明,表面化学对WJMSCs行为的影响比对地形的影响更大。总之,胶原蛋白包裹的电纺PCL具有生物活性和三维结构,可增强WJMSC的生存能力和分化能力,因此具有用于神经组织工程的潜力。 (c)2015年威利期刊有限公司

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