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Scalable and physiologically relevant microenvironments for human pluripotent stem cell expansion and differentiation

机译:用于人多能干细胞膨胀和分化的可扩展和生理学相关的微环境

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摘要

Human pluripotent stem cells (hPSCs) are required in large numbers for various biomedical applications. However, the scalable and cost-effective culturing of high quality hPSCs and their derivatives remains very challenging. Here, we report a novel and physiologically relevant 3D culture system (called the AlgTube cell culture system) for hPSC expansion and differentiation. With this system, cells are processed into and cultured in microscale alginate hydrogel tubes that are suspended in the cell culture medium in a culture vessel. The hydrogel tubes protect cells from hydrodynamic stresses in the culture vessel and limit the cell mass smaller than 400 mu min diameter to ensure efficient mass transport, creating cell-friendly microenvironments for growing cells. This system is simple, scalable, highly efficient, defined and compatible with the current good manufacturing practices. Under optimized culture conditions, the AlgTubes enabled long-term culture of hPSCs (10 passages, 50 days) with high cell viability, high growth rate (1000-fold expansion over 10 days per passage), high purity (95% Oct4+) and high yield (5.0 x 10(8) cells ml(-1)), all of which offer considerable advantages compared to current approaches. Moreover, the AlgTubes enabled directed differentiation of hPSCs into various tissue cells. This system can be readily scaled to support research from basic biological study to clinical development and the future industry-scale production.
机译:对于各种生物医学应用,大量需要人多能干细胞(HPSC)。然而,对高质量HPSC和其衍生物的可扩展性和经济有效的培养仍然非常具有挑战性。在这里,我们报告了一种用于HPSC膨胀和分化的新型和生理相关的3D培养系统(称为Algtube细胞培养系统)。利用该系统,将细胞加工成和培养在微观藻酸盐水凝胶管中,悬浮在培养容器中的细胞培养基中。水凝胶管保护细胞免受培养容器中的流体动力学应力,并限制小于400 min最小直径的细胞质量,以确保有效的质量传输,从而为生长细胞产生细胞友好的微环境。该系统简单,可扩展,高效,定义,与当前的良好制造实践相媲美。在优化的培养条件下,AlgTubes使HPSCS的长期培养(& 10段,& 50天)具有高细胞活力,高生长速率(每次10天超过10天的扩增),高纯度(& 95%Oct4 +)和高产率(5.0×10(8)个细胞m1(-1)),所有这些都提供了与当前方法相比的相当优势。此外,AlgTubes使HPSC的指向分化为各种组织细胞。该系统可以很容易地扩展以支持基本生物学研究的研究,以临床发展和未来的行业规模生产。

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