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首页> 外文期刊>Stem Cell Reports >Top-Down Inhibition of BMP Signaling Enables Robust Induction of hPSCs Into Neural Crest in Fully Defined, Xeno-free Conditions
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Top-Down Inhibition of BMP Signaling Enables Robust Induction of hPSCs Into Neural Crest in Fully Defined, Xeno-free Conditions

机译:BMP信号的自上而下的抑制使hPSC能够在完全定义的无异种条件下稳健地诱导进入神经rest

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摘要

Summary Defects in neural crest development have been implicated in many human disorders, but information about human neural crest formation mostly depends on extrapolation from model organisms. Human pluripotent stem cells (hPSCs) can be differentiated into in?vitro counterparts of the neural crest, and some of the signals known to induce neural crest formation in?vivo are required during this process. However, the protocols in current use tend to produce variable results, and there is no consensus as to the precise signals required for optimal neural crest differentiation. Using a fully defined culture system, we have now found that the efficient differentiation of hPSCs to neural crest depends on precise levels of BMP signaling, which are vulnerable to fluctuations in endogenous BMP production. We present a method that controls for this phenomenon and could be applied to other systems where endogenous signaling can also affect the outcome of differentiation protocols.
机译:总结神经c发育中的缺陷与许多人类疾病有关,但是关于人类神经rest形成的信息主要取决于模型生物的推断。人多能干细胞(hPSC)可以分化为神经c的体外对应物,在此过程中需要一些已知的诱导体内神经rest形成的信号。然而,当前使用的协议倾向于产生可变的结果,并且关于最佳神经c分化所需的精确信号尚无共识。使用完全定义的培养系统,我们现在发现hPSCs向神经neural的有效分化取决于BMP信号的精确水平,这很容易受到内源性BMP产量波动的影响。我们提出了一种控制这种现象的方法,可以应用于内源性信号传导也会影响分化协议结果的其他系统。

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