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首页> 外文期刊>Cells tissues organs >The Chick Caudolateral Epiblast Acts as a Permissive Niche for Generating Neuromesodermal Progenitor Behaviours
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The Chick Caudolateral Epiblast Acts as a Permissive Niche for Generating Neuromesodermal Progenitor Behaviours

机译:小鸡剖腹产外表卵剂充当了用于产生神经成胚胎祖细胞行为的允许性的利基

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Neuromesodermal progenitors (NMps) are a population of bipotent progenitors that maintain competence to generate both spinal cord and paraxial mesoderm throughout the elongation of the posterior body axis. Recent studies have generated populations of NMp-like cells in culture, which have been shown to differentiate to both neural and mesodermal cell fates when transplanted into either mouse or chick embryos. Here, we aim to compare the potential of mouse embryonic stem (ES) cell-derived progenitor populations to generate NMp behaviour against both undifferentiated and differentiated populations. We define NMp behaviour as the ability of cells to: (i) contribute to a significant proportion of the anterior-posterior body axis, (ii) enter into both posterior neural and somitic compartments, and (iii) retain a proportion of the progenitor population within the posterior growth zone. We compare previously identified ES cell-derived NMp-like populations to undifferentiated mouse ES cells and find that they all display similar potentials to generate NMp behaviour in vivo. To assess whether this competence is lost upon further differentiation, we generated anterior and posterior embryonic cell types through the generation of 3D gastruloids and show that NMp competence is lost within the anterior (Brachyury-negative) portion of the gastruloid. Together this suggests that in vitro-derived NMp-like cells maintain an ability to contribute to multiple germ layers that is also present within pluripotent ES cells, rather than acquiring a neuromesodermal competent state through differentiation. (c) 2018 The Author(s) Published by S. Karger AG, Basel
机译:神经肌瘤祖细胞(NMP)是两能祖细胞的群体,其在后体轴线的伸长率上保持能力产生脊髓和瘫痪的中胚层。最近的研究已经产生了培养中的NMP样细胞的群体,这已被证明在移植到小鼠或小鸡胚胎中时分化为神经和中胚层的细胞率。在这里,我们的目的是比较小鼠胚胎茎(ES)细胞衍生的祖细胞群的潜力,以产生针对未分化和分化群体的NMP行为。我们将NMP行为定义为细胞的能力:(i)有助于大部分前后体轴的比例,(ii)进入后部神经和一个体团隔室,(iii)保留祖母群的比例在后生长区内。我们将先前将ES小区派生的NMP样群体与未分化的鼠标ES单元进行比较,并发现它们都显示出类似的电位以在体内生成NMP行为。为了评估进一步分化后这种能力是否丧失,我们通过产生3D胃胆管产生前胚和后胚细胞类型,并表明NMP能力损失了腹腔内的前(Brachyury阴性)部分。这表明在体外衍生的NMP样细胞中保持有助于多能ES细胞内的多种胚层的能力,而不是通过分化获取神经成胚胎主管状态。 (c)2018年由巴塞尔的S. Karger AG发布的提交人

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