首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Generation of neural crest-derived peripheral neurons and floor plate cells from mouse and primate embryonic stem cells
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Generation of neural crest-derived peripheral neurons and floor plate cells from mouse and primate embryonic stem cells

机译:从小鼠和灵长类胚胎干细胞产生神经c衍生的周围神经元和底板细胞

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To understand the range of competence of embryonic stem (ES) cell-derived neural precursors, we have examined in vitro differentiation of mouse and primate ES cells into the dorsal- (neural crest) and ventralmost (floor plate) cells of the neural axis. Stromal cell-derived inducing activity (SDIA; accumulated on PA6 stromal cells) induces cocultured ES cells to differentiate into rostral CNS tissues containing both ventral and dorsal cells. Although early exposure of SDIA-treated ES cells to bone morphogenetic protein (BMP)4 suppresses neural differentiation and promotes epidermo-genesis, late BMP4 exposure after the fourth day of coculture causes differentiation of neural crest cells and dorsalmost CNS cells, with autonomic system and sensory lineages induced preferentially by high and low BMP4 concentrations, respectively. In contrast, Sonic hedgehog (Shh) suppresses differentiation of neural crest lineages and promotes that of ventral CNS tissues such as motor neurons. Notably, high concentrations of Shh efficiently promote differentiation of HNF3β~+ floor plate cells with axonal guidance activities. Thus, SDIA-treated ES cells generate naieve precursors that have the competence of differentiating into the "full" dorsal―ventral range of neuroectodermal derivatives in response to patterning signals.
机译:为了了解胚胎干(ES)细胞来源的神经前体的能力范围,我们检查了小鼠和灵长类ES细胞在体外分化为神经轴的背侧(神经rest)和最腹侧(底板)的能力。基质细胞来源的诱导活性(SDIA;在PA6基质细胞上积累)诱导共培养的ES细胞分化为包含腹侧和背侧细胞的鼻侧CNS组织。尽管将SDIA处理的ES细胞早期暴露于骨形态发生蛋白(BMP)4会抑制神经分化并促进表皮生成,但在共培养第四天后BMP4暴露较晚会导致神经rest细胞和最背面CNS细胞分化,并具有自主系统和感觉谱系分别由高和低BMP4浓度诱导。相反,声波刺猬(Shh)抑制神经c谱系分化并促进腹侧中枢神经系统组织(例如运动神经元)的分化。值得注意的是,高浓度的Shh有效地促进了具有轴突引导活性的HNF3β〜+地板细胞的分化。因此,经SDIA处理的ES细胞会产生幼稚的前体,这些前体具有响应模式信号而分化为神经外胚层衍生物的“完整”背侧-腹侧范围的能力。

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