首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >A xeno-free microcarrier-based stirred culture system for the scalable expansion of human mesenchymal stem/stromal cells isolated from bone marrow and adipose tissue
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A xeno-free microcarrier-based stirred culture system for the scalable expansion of human mesenchymal stem/stromal cells isolated from bone marrow and adipose tissue

机译:一种无异源的基于微载体的搅拌培养系统,用于从骨髓和脂肪组织分离的人间充质干/基质细胞的可扩展扩增

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Human mesenchymal stem/stromal cells (MSC) are promising candidates for cell-based therapies and the development of microcarrier-based cultures in scalable bioreactors with well-defined xenogeneic-free components represent important milestones towards the clinical-scale production of these cells. In this work, we optimized our previously developed xeno-free microcarrier-based system for the scalable expansion of human MSC isolated from bone marrow (BM MSC) and adipose-derived stem/stromal cells (ASC). By adapting the agitation/feeding protocol at the initial cell seeding/cultivation stage in spinner flasks, we were able to maximize cell expansion rate and final cell yield. Maximal cell densities of 3.6 x 10(5) and 1.9 x 10(5) cells/mL were obtained for BM MSC (0.60 +/- 0.04 day(-1)) and ASC (0.9 +/- 0.1 day(-1)) cultures, upon seven and eight days of cultivation, respectively. Ready-to-use microcarriers Synthemax (R) II and Enhanced Attachment (R) supported identical expansion performance of BM MSC, turning those effective alternatives to the precoated plastic microcarriers used in our xeno-free scalable culture system. Importantly, expanded MSC maintained their immunophenotype and multilineage differentiation potential. Moreover, secretome analysis suggested a priming effect of stirred culture conditions on cytokine production by MSC. This culture system yielded considerable final cell densities that can be scaled-up to controlled large-scale bioreactors allowing a more efficient, safe and cost-effective MSC production for clinical settings.
机译:人间充质干/基质细胞(MSC)是基于细胞的疗法的有希望的候选者,具有可定义的无异源成分的可扩展生物反应器中基于微载体培养物的开发代表了这些细胞临床规模生产的重要里程碑。在这项工作中,我们优化了我们先前开发的无异源微载体的系统,用于从骨髓(BM MSC)和脂肪来源的干/基质细胞(ASC)分离的人MSC的可扩展性扩展。通过在旋转瓶的初始细胞接种/培养阶段适应搅拌/进料方案,我们能够使细胞扩增速率和最终细胞产量最大化。对于BM MSC(0.60 +/- 0.04天(-1))和ASC(0.9 +/- 0.1天(-1))获得的最大细胞密度分别为3.6 x 10(5)和1.9 x 10(5)/ mL )的文化,分别培养了7天和8天。即用型微载体Synthemax(R)II和Enhanced Attachment(R)支持BM MSC的相同扩展性能,从而将这些有效的替代品转变为我们无异种可扩展培养系统中使用的预涂塑料微载体。重要的是,扩展的MSC保持了其免疫表型和多系分化潜能。此外,分泌组分析表明搅拌培养条件对MSC产生细胞因子具有启动作用。该培养系统产生了可观的最终细胞密度,可以将其放大至受控的大型生物反应器,从而为临床环境提供更高效,安全和具有成本效益的MSC生产。

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