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Full factorial screening of human embryonic stem cell maintenance with multiplexed microbioreactor arrays

机译:多重微生物反应器阵列对人胚胎干细胞维持的全因子筛选

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Use of human pluripotent stem cells (hPSCs) in regenerative medicine applications relies on control of cell fate decisions by exogenous factors. This control can be hindered by the use of undefined culture components, poorly understood autocrine/paracrine effects, spatiotemporal variations in microenvironmental composition inherent to static culture formats, and signal cross-talk between multiple factors. We recently described microbioreactor arrays that provide a full factorial spectrum of exogenous factors, and allow gradual accumulation of paracrine factors through serial culture chambers. We combined these with defined biochemical conditions, and in situ reporter gene- and immunofluorescence-based readouts to create an hPSC screening platform with enhanced data throughput and microenvironmental control. HES3-EOS-C(3+)-EiP reporter hESCs were screened against FCF-2, TCF-β1, and retinoic acid in a modified mTeSR-1 medium background. Differential pluripotency marker expression reflected mTeSR-1 's maintenance capacity, and differentiation in response to removal of maintenance factors or addition of retinoic acid. Interestingly, pluripotency marker expression was downregulated progressively through serial chambers. Since downstream chambers are exposed to greater levels of paracrine factors under continuous flow, this effect is thought to result from secreted factors that negatively influence pluripotency. The microbioreactor array platform decodes factor interplay, and has a broad application in deciphering microenvironmental control of cell fate.
机译:人类多能干细胞(hPSC)在再生医学应用中的使用取决于通过外源因素控制细胞命运的决定。使用不确定的培养成分,对自分泌/旁分泌的作用了解不多,静态培养形式固有的微环境组成的时空变化以及多种因素之间的信号串扰可能会阻碍这种控制。我们最近描述了微生物反应器阵列,其提供外源因子的完整因子谱,并允许通过串联培养室逐渐积累旁分泌因子。我们将这些与确定的生化条件结合起来,并基于报告基因和基于免疫荧光的原位读数创建了具有增强的数据吞吐量和微环境控制的hPSC筛选平台。在改良的mTeSR-1培养基背景下,针对FCF-2,TCF-β1和视黄酸筛选了HES3-EOS-C(3 +)-EiP报告基因hESC。差异多能性标记物的表达反映了mTeSR-1的维持能力,并反映了去除维持因子或添加视黄酸后的分化。有趣的是,多能性标志物的表达通过连续的小室逐渐下调。由于下游腔室在连续流动下暴露于更高水平的旁分泌因子,因此认为这种作用是由对多能性产生负面影响的分泌因子产生的。微型生物反应器阵列平台可解码因子相互作用,并在解密细胞命运的微环境控制中具有广泛的应用。

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