Effect of hypoxia on proliferation and neural commitment of embryonic stem cells at different stages of pluripotency

Tiago G Fernandes, M. M. Diogo, A. Fernandes-Platzgummer, C. Lobato da Silva, J. Cabral
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引用次数: 3

Abstract

We have studied the effect of low oxygen levels (2% O2), or hypoxia, in the expansion and neural commitment of mouse embryonic stem (ES) cells. When ES cells were maintained in culture with leukemia inhibitory factor (LIF), cell proliferation was reduced at low oxygen levels and a simultaneous reduction in cell viability was also observed. Morphological changes and different cell cycle patterns also occurred, suggesting some early differentiation under hypoxic conditions. However, when cells were maintained in a ground state of pluripotency, by inhibition of autocrine FGF4/ERK and GSK3 signaling, hypoxia did not affect cell proliferation, and did not induce early differentiation. Nevertheless, during neural commitment, low oxygen tension exerted a positive effect on early differentiation of ES cells, resulting in a faster commitment towards neural progenitors. Overall our results demonstrate the need to specifically regulate the oxygen content, especially hypoxia, along with other culture conditions, when developing new strategies for ES cell expansion and/or controlled differentiation.
缺氧对胚胎干细胞多能性不同阶段增殖和神经功能的影响
我们研究了低氧水平(2% O2)或缺氧对小鼠胚胎干(ES)细胞的扩张和神经功能的影响。用白血病抑制因子(leukemia inhibitory factor, LIF)培养胚胎干细胞时,低氧水平下细胞增殖减少,同时细胞活力降低。形态学变化和不同的细胞周期模式也发生了变化,表明在缺氧条件下有一些早期分化。然而,当细胞维持在多能性的基态时,通过抑制自分泌的FGF4/ERK和GSK3信号,缺氧不影响细胞增殖,也不会诱导早期分化。然而,在神经承代过程中,低氧张力对胚胎干细胞的早期分化产生积极影响,导致胚胎干细胞更快地向神经祖细胞承代。总的来说,我们的结果表明,在开发胚胎干细胞扩增和/或受控分化的新策略时,需要专门调节氧含量,特别是缺氧,以及其他培养条件。
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