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Manipulation of Signaling Thresholds in Engineered Stem Cell Niches Identifies Design Criteria for Pluripotent Stem Cell Screens

机译:操纵工程干细胞壁ches中的信号阈值确定了多能干细胞筛查的设计标准

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摘要

In vivo, stem cell fate is regulated by local microenvironmental parameters. Governing parameters in this stem cell niche include soluble factors, extra-cellular matrix, and cell-cell interactions. The complexity of this in vivo niche limits analyses into how individual niche parameters regulate stem cell fate. Herein we use mouse embryonic stem cells (mESC) and micro-contact printing (µCP) to investigate how niche size controls endogenous signaling thresholds. µCP is used to restrict colony diameter, separation, and degree of clustering. We show, for the first time, spatial control over the activation of the Janus kinase/signal transducer and activator of transcription pathway (Jak-Stat). The functional consequences of this niche-size-dependent signaling control are confirmed by demonstrating that direct and indirect transcriptional targets of Stat3, including members of the Jak-Stat pathway and pluripotency-associated genes, are regulated by colony size. Modeling results and empirical observations demonstrate that colonies less than 100 µm in diameter are too small to maximize endogenous Stat3 activation and that colonies separated by more than 400 µm can be considered independent from each other. These results define parameter boundaries for the use of ESCs in screening studies, demonstrate the importance of context in stem cell responsiveness to exogenous cues, and suggest that niche size is an important parameter in stem cell fate control.
机译:在体内,干细胞的命运受局部微环境参数的调节。干细胞生态位中的主要控制参数包括可溶性因子,细胞外基质和细胞间相互作用。这种体内生态位的复杂性限制了对各个生态位参数如何调节干细胞命运的分析。本文中,我们使用小鼠胚胎干细胞(mESC)和微接触印刷(µCP)来研究利基大小如何控制内源性信号阈值。 µCP用于限制菌落直径,分离和聚集程度。我们首次展示了对Janus激酶/信号转导子和转录途径激活子(Jak-Stat)激活的空间控制。通过证明Stat3的直接和间接转录靶点(包括Jak-Stat途径的成员和多能性相关基因)受菌落大小调控,证实了这种依赖于小生境大小的信号控制的功能后果。建模结果和经验观察结果表明,直径小于100 µm的菌落太小,无法最大化内源性Stat3激活,而大于400 µm的菌落可以认为是彼此独立的。这些结果确定了在筛选研究中使用ESC的参数界限,证明了背景在干细胞对外源性信号的反应中的重要性,并表明小生境大小是干细胞命运控制中的重要参数。

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