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Hypoxic Three-Dimensional Scaffold-Free Aggregate Cultivation of Mesenchymal Stem Cells in a Stirred Tank Reactor

机译:搅拌罐反应器中间质干细胞的低氧三维无支架聚集培养

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摘要

Extensive expansion of mesenchymal stem cells (MSCs) for cell-based therapies remains challenging since long-term cultivation and excessive passaging in two-dimensional conditions result in a loss of essential stem cell properties. Indeed, low survival rate of cells, alteration of surface marker profiles, and reduced differentiation capacity are observed after in vitro expansion and reduce therapeutic success in clinical studies. Remarkably, cultivation of MSCs in three-dimensional aggregates preserve stem cell properties. Hence, the large scale formation and cultivation of MSC aggregates is highly desirable. Besides other effects, MSCs cultivated under hypoxic conditions are known to display increased proliferation and genetic stability. Therefore, in this study we demonstrate cultivation of adipose derived human MSC aggregates in a stirred tank reactor under hypoxic conditions. Although aggregates were exposed to comparatively high average shear stress of 0.2 Pa as estimated by computational fluid dynamics, MSCs displayed a viability of 78–86% and maintained their surface marker profile and differentiation potential after cultivation. We postulate that cultivation of 3D MSC aggregates in stirred tank reactors is valuable for large-scale production of MSCs or their secreted compounds after further optimization of cultivation parameters.
机译:间充质干细胞(MSCs)广泛用于基于细胞的治疗仍然具有挑战性,因为在二维条件下长期培养和过度传代会导致干细胞基本特性的丧失。实际上,在体外扩增后观察到细胞的低存活率,表面标志物谱的改变和降低的分化能力,并降低了临床研究中的治疗成功率。值得注意的是,在三维聚集体中培养MSC保留了干细胞特性。因此,非常需要大规模形成和培养MSC聚集体。除其他作用外,已知在低氧条件下培养的MSC表现出增加的增殖和遗传稳定性。因此,在这项研究中,我们证明了在缺氧条件下在搅拌釜反应器中培养脂肪来源的人MSC聚集体。尽管通过计算流体动力学估计,骨料暴露于0.2 Pa的较高平均剪切应力下,但MSC在培养后仍显示出78-86%的活力,并保持其表面标志物特征和分化潜能。我们假设在进一步优化培养参数后,在搅拌釜反应器中培养3D MSC聚集体对于大规模生产MSC或它们的分泌化合物非常有价值。

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