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首页> 外文期刊>Cell stem cell >Rapid expansion of human hematopoietic stem cells by automated control of inhibitory feedback signaling.
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Rapid expansion of human hematopoietic stem cells by automated control of inhibitory feedback signaling.

机译:通过自动控制抑制性反馈信号来快速扩增人类造血干细胞。

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摘要

Clinical hematopoietic transplantation outcomes are strongly correlated with the numbers of cells infused. Anticipated novel therapeutic implementations of hematopoietic stem cells (HSCs) and their derivatives further increase interest in strategies to expand HSCs ex vivo. A fundamental limitation in all HSC-driven culture systems is the rapid generation of differentiating cells and their secreted inhibitory feedback signals. Herein we describe an integrated computational and experimental strategy that enables a tunable reduction in the global levels and impact of paracrine signaling factors in an automated closed-system process by employing a controlled fed-batch media dilution approach. Application of this system to human cord blood cells yielded a rapid (12-day) 11-fold increase of HSCs with self-renewing, multilineage repopulating ability. These results highlight the marked improvements that control of feedback signaling can offer primary stem cell culture and demonstrate a clinically relevant rapid and relatively low culture volume strategy for ex vivo HSC expansion.
机译:临床造血移植的结果与注入的细胞数量密切相关。造血干细胞(HSC)及其衍生物的新的治疗方法有望进一步提高人们对离体扩增HSC的策略的兴趣。所有HSC驱动的培养系统的基本限制是分化细胞及其分泌的抑制性反馈信号的快速生成。本文中,我们描述了一种集成的计算和实验策略,通过采用受控的分批补料稀释方法,可以在自动化的封闭系统过程中以可调节的方式降低全局水平和旁分泌信号因子的影响。该系统在人脐带血细胞上的应用可使HSC迅速(12天)增加11倍,具有自我更新,多谱系繁殖的能力。这些结果强调了反馈信号控制可以提供原代干细胞培养的显着改善,并证明了离体HSC扩增的临床相关的快速且相对较低的培养量策略。

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