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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Three‐dimensional culture of single embryonic stem‐derived neural/stem progenitor cells in fibrin hydrogels: neuronal network formation and matrix remodelling
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Three‐dimensional culture of single embryonic stem‐derived neural/stem progenitor cells in fibrin hydrogels: neuronal network formation and matrix remodelling

机译:纤维蛋白水凝胶中单胚胎茎衍生神经/茎祖细胞的三维培养:神经网络形成和基质重塑

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Abstract In an attempt to improve the efficacy of neural stem/progenitor cell (NSPC) based therapies, fibrin hydrogels are being explored to provide a favourable microenvironment for cell survival and differentiation following transplantation. In the present work, the ability of fibrin to support the survival, proliferation, and neuronal differentiation of NSPCs derived from embryonic stem (ES) cells under monolayer culture was explored. Single mouse ES‐NSPCs were cultured within fibrin (fibrinogen concentration: 6 mg/ml) under neuronal differentiation conditions up to 14 days. The ES‐NSPCs retained high cell viability and proliferated within small‐sized spheroids. Neuronal differentiation was confirmed by an increase in the levels of βIII‐tubulin and NF200 over time. At day 14, cell‐matrix constructs mainly comprised NSPCs and neurons (46.5% βIII‐tubulin + cells). Gamma‐aminobutyric acid (GABA)ergic and dopaminergic/noradrenergic neurons were also observed, along with a network of synaptic proteins. The ES‐NSPCs expressed matriptase and secreted MMP‐2/9, with MMP‐2 activity increasing along time. Fibronectin, laminin and collagen type IV deposition was also detected. Fibrin gels prepared with higher fibrinogen concentrations (8/10 mg/ml) were less permissive to neurite extension and neuronal differentiation, possibly owing to their smaller pore area and higher rigidity. Overall, it is shown that ES‐NSPCs within fibrin are able to establish neuronal networks and to remodel fibrin through MMP secretion and extracellular matrix (ECM) deposition. This three‐dimensional (3D) culture system was also shown to support cell viability, neuronal differentiation and ECM deposition of human ES‐NSPCs. The settled 3D platform is expected to constitute a valuable tool to develop fibrin‐based hydrogels for ES‐NSPC delivery into the injured central nervous system. Copyright ? 2016 John Wiley & Sons, Ltd.
机译:摘要在提高神经茎/祖细胞(NSPC)疗法的疗效的尝试中,正在探索纤维蛋白水凝胶以提供对细胞存活和移植后分化的有利微环境。在目前的工作中,探讨了纤维蛋白支持在单层培养物下衍生自胚胎茎(ES)细胞的NSPCs的存活,增殖和神经元分化的能力。在神经元分化条件下,在纤维蛋白(纤维蛋白原浓度:6mg / ml)下培养单鼠ES-NSPCs在高达14天内。 ES-NSPCS保留高细胞活力并在小型球状体内增殖。通过βIII-管蛋白和NF200随时间的增加来证实神经元分化。在第14天,细胞基质构建体主要包含NSPC和神经元(46.5%βIII-小管蛋白+细胞)。还观察到γ-氨基丁酸(GABA)ERGIC和多巴胺能/去甲肾上腺素神经元以及突触蛋白的网络。 ES-NSPCs表达矩阵和分泌的MMP-2/9,MMP-2活性沿时间增加。还检测了纤连蛋白,层粘蛋白和胶原蛋白型IV型沉积。用更高纤维蛋白原浓度(8/10mg / ml)制备的纤维蛋白凝胶对神经突延伸和神经元分化的唯一允许,可能由于其较小的孔面积和更高的刚性而受到神经元分化。总的来说,显示纤维蛋白内的ES-NSPC能够建立神经元网络并通过MMP分泌和细胞外基质(ECM)沉积来重塑纤维蛋白。该三维(3D)培养系统也显示为支持人类ES-NSPCS的细胞活力,神经元分化和ECM沉积。预计稳定的3D平台将构成一种有价值的工具,可以将纤维蛋白的水凝胶用于ES-NSPC输送到受伤的中枢神经系统中。版权? 2016年John Wiley& SONS,LTD.

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