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首页> 外文期刊>Developmental biology >The embryonic midbrain directs neuronal specification of embryonic stem cells at early stages of differentiation.
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The embryonic midbrain directs neuronal specification of embryonic stem cells at early stages of differentiation.

机译:胚胎中脑在分化的早期指导胚胎干细胞的神经元功能。

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Specific neuronal differentiation of Embryonic Stem Cells (ESCs) depends on their capacity to interpret environmental cues. At present, it is not clear at which stage of differentiation ESCs become competent to produce multiple neuronal lineages in response to the niche of the embryonic brain. To unfold the developmental potential of ESC-derived precursors, we transplanted these cells into the embryonic midbrain explants, where neurogenesis occurs as in normal midbrain development. Using this experimental design, we show that the transition from ESCs to Embryoid Body (EB) precursors is necessary to differentiate into Lmx1a(+)/Ptx3(+)/TH(+) dopaminergic neurons around the ventral midline of the midbrain. In addition, EB cells placed at other dorsal-ventral levels of the midbrain give rise to Nkx6.1(+) red nucleus (RN) neurons, Nkx2.2(+) ventral interneurons and Pax7(+) dorsal neurons at the correct positions. Notably, differentiation of ESCs into Neural Precursor Cells (NPCs) prior to transplantation markedly reduces specification at the Lmx1a, Nkx6.1 and Pax7 expression domains, without affecting neuronal differentiation. Finally, exposure to Fgf8 and Shh in vitro promotes commitment of some ESC-derived NPCs to differentiate into putative Lmx1a(+) dopaminergic neurons in the midbrain. Our data demonstrate intrinsic developmental potential differences among ESC-derived precursor populations.
机译:胚胎干细胞(ESC)的特定神经元分化取决于它们解释环境提示的能力。目前,尚不清楚在哪个分化阶段,ESC能够胜任响应胚胎脑的利基反应而产生多种神经元谱系。为了发挥ESC来源的前体的发展潜力,我们将这些细胞移植到了胚胎中脑外植体中,在那里发生了与正常中脑发育一样的神经发生。使用此实验设计,我们表明,从ESC到胚状体(EB)前体的转变对于分化为中脑腹中线周围的Lmx1a(+)/ Ptx3(+)/ TH(+)多巴胺能神经元是必要的。此外,放置在中脑其他背腹水平的EB细胞会在正确位置产生Nkx6.1(+)红核(RN)神经元,Nkx2.2(+)腹间神经元和Pax7(+)背神经元。值得注意的是,在移植之前将ESC分化为神经前体细胞(NPC)会显着降低Lmx1a,Nkx6.1和Pax7表达域的规格,而不会影响神经元分化。最后,在体外暴露于Fgf8和Shh可以促进某些ESC来源的NPC分化为中脑中假定的Lmx1a(+)多巴胺能神经元。我们的数据表明,ESC衍生的前体种群之间内在的发展潜力差异。

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