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首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Efficient smooth muscle cell differentiation of iPS cells on curcumin-incorporated chitosan/collagen/polyvinyl-alcohol nanofibers
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Efficient smooth muscle cell differentiation of iPS cells on curcumin-incorporated chitosan/collagen/polyvinyl-alcohol nanofibers

机译:在姜黄素掺入的壳聚糖/胶原/聚乙烯醇纳米纤维上高效平滑肌肉细胞分化IPS细胞

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摘要

Bladder dysfunction is one of the most common diseases that occur for a number of reasons and the current treatment modalities do not improve much in its recovery process. Tissue engineering in the last two decades has given great hope for the treatment of these disorders. In this study, a composite nanofibrous scaffold was fabricated from chitosan, collagen, and polyvinyl-alcohol polymer blend while curcumin incorporated in scaffold fibers. The scaffold supportive functions from smooth muscle cell differentiation were studied when human-induced pluripotent stem cells were cultured on the scaffolds under differentiation medium. Biocompatibility of the fabricated scaffold increased significantly by incorporating curcumin in the scaffold fibers, where protein adsorption, cell attachment, and viability were increased in the nanofiber/curcumin group compared with the other groups. In addition, the expression level of smooth muscle cell-related genes, including alpha-smooth muscle actin (alpha SMA), smooth muscle 22 alpha (SM-22a), Caldesmon1, and Calponin1in the stem cells upregulated while cultured in the presence of curcumin, but this increase was significantly improved while cells cultured on the nanofibers/curcumin. In addition, alpha SMA protein in the cells cultured on the nanofibers/curcumin expressed significantly higher than those cells cultured on the nanofibers without curcumin. It can be concluded that smooth muscle cell differentiation of the induced pluripotent stem cells promoted by curcumin and this promotion was synergistically improved while curcumin incorporated in the nanofibers.
机译:膀胱功能障碍是由于多种原因发生的最常见疾病之一,目前的治疗方式在其恢复过程中不会有很大改善。在过去的二十年中,组织工程赋予了治疗这些疾病的绝佳希望。在该研究中,由壳聚糖,胶原和聚乙烯醇聚合物混合物制造复合纳米纤维支架,同时掺入支架纤维中的姜黄素。当在分化介质下的支架上培养人诱导的多能干细胞时,研究了来自平滑肌细胞分化的支架支持功能。通过将姜黄素掺入支架纤维中,制造支架的生物相容性显着增加,其中纳米纤维/姜黄素组在纳米纤维/姜黄素组中增加了蛋白质吸附,细胞附着和活力。此外,平滑肌细胞相关基因的表达水平,包括α-平滑肌肌动蛋白(αSMA),平滑肌22α(SM-22A),Caldesmon1和Calponin1在姜黄素存在下培养的同时上调但是,在纳米纤维/姜黄素上培养的细胞培养的同时,这种增加显着提高。此外,在纳米纤维/姜黄素上培养的细胞中的αSMA蛋白显着高于在没有姜黄素的纳米纤维上培养的细胞。可以得出结论,姜黄素促进的诱导多能干细胞的平滑肌细胞分化,并在纳米纤维中掺入姜黄素的同时改善。

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