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在微流控芯片中培养的胚胎干细胞通过产生包括白血病抑制因子(LIF)在内的内源性信号来掌控自身命运。

Embryonic Stem Cells Cultured in Microfluidic Chambers Take Control of Their Fate by Producing Endogenous Signals Including LIF.

作者信息

Guild Joshua, Haque Amranul, Gheibi Pantea, Gao Yandong, Son Kyung Jin, Foster Elena, Dumont Sophie, Revzin Alexander

机构信息

Department of Biomedical Engineering, University of California, Davis, Davis, California, USA.

Department of Cell and Tissue Biology, University of California San Francisco, San Francisco, California, USA.

出版信息

Stem Cells. 2016 Jun;34(6):1501-12. doi: 10.1002/stem.2324. Epub 2016 Feb 25.

Abstract

It is important to understand the role played by endogenous signals in shaping stem cell fate decisions to develop better culture systems and to improve understanding of development processes. In this study, we describe the behavior of mouse embryonic stem cells (mESCs) inside microfluidic chambers (microchambers) operated under conditions of minimal perfusion. mESCs inside microchambers formed colonies and expressed markers of pluripotency in the absence of feeders or pluripotency-inducing signals such as leukemia inhibitory factor (LIF), while mESCs in standard cultureware differentiated rapidly. In a series of experiments, we demonstrate that remarkable differences in stem cell phenotype are due to endogenous production of LIF and other growth factors brought upon by cultivation in confines of a microchamber in the absence of perfusion (dilution). At the protein level, mESCs produced ∼140 times more LIF inside microchambers than under standard culture conditions. In addition, we demonstrate that pluripotent phenotype of stem cells could be degraded by increasing the height (volume) of the microchamber. Furthermore, we show that inhibition of LIF in microchambers, via the JAK/STAT3 pathway, leads to preferential differentiation into mesoderm that is driven by bone morphogenetic protein (BMP)-4. Collectively, we demonstrate for the first time that it is possible to design a cell culture system where stem cell fate is controlled solely by the endogenous signals. Our study may help shift the paradigm of stem cell cultivation away from relying on expensive exogenous molecules such as growth factors and toward designing culture chambers for harnessing endogenous signals. Stem Cells 2016;34:1501-1512.

摘要

了解内源性信号在塑造干细胞命运决定中所起的作用对于开发更好的培养系统以及增进对发育过程的理解非常重要。在本研究中,我们描述了在最小灌注条件下运行的微流控腔室(微腔)内小鼠胚胎干细胞(mESC)的行为。微腔内的mESC在没有饲养层或白血病抑制因子(LIF)等多能性诱导信号的情况下形成集落并表达多能性标记,而标准培养器皿中的mESC则迅速分化。在一系列实验中,我们证明干细胞表型的显著差异是由于在无灌注(稀释)的微腔限制内培养所带来的LIF和其他生长因子的内源性产生。在蛋白质水平上,微腔内的mESC产生的LIF比标准培养条件下多约140倍。此外,我们证明增加微腔的高度(体积)会使干细胞的多能表型退化。此外,我们表明通过JAK/STAT3途径抑制微腔内的LIF会导致优先分化为中胚层,这是由骨形态发生蛋白(BMP)-4驱动的。我们首次共同证明,有可能设计一种细胞培养系统,其中干细胞命运仅由内源性信号控制。我们的研究可能有助于改变干细胞培养的模式,从依赖昂贵的外源性分子如生长因子转向设计用于利用内源性信号的培养腔室。《干细胞》2016年;34:1501 - 1512。

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