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Spatiotemporal recapitulation of central nervous system development by murine embryonic stem cell-derived neural stem/progenitor cells.

机译:鼠胚胎干细胞衍生的神经干/祖细胞对中枢神经系统发育的时空再现。

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Neural stem/progenitor cells (NS/PCs) can generate a wide variety of neural cells. However, their fates are generally restricted, depending on the time and location of NS/PC origin. Here we demonstrate that we can recapitulate the spatiotemporal regulation of central nervous system (CNS) development in vitro by using a neurosphere-based culture system of embryonic stem (ES) cell-derived NS/PCs. This ES cell-derived neurosphere system enables the efficient derivation of highly neurogenic fibroblast growth factor-responsive NS/PCs with early temporal identities and high cell-fate plasticity. Over repeated passages, these NS/PCs exhibit temporal progression, becoming epidermal growth factor-responsive gliogenic NS/PCs with late temporal identities; this change is accompanied by an alteration in the epigenetic status of the glial fibrillary acidic protein promoter, similar to that observed in the developing brain. Moreover, the rostrocaudal and dorsoventral spatial identities of the NS/PCs can be successfully regulated by sequential administration of several morphogens. These NS/PCs can differentiate into early-born projection neurons, including cholinergic, catecholaminergic, serotonergic, and motor neurons, that exhibit action potentials in vitro. Finally, these NS/PCs differentiate into neurons that form synaptic contacts with host neurons after their transplantation into wild-type and disease model animals. Thus, this culture system can be used to obtain specific neurons from ES cells, is a simple and powerful tool for investigating the underlying mechanisms of CNS development, and is applicable to regenerative treatment for neurological disorders.
机译:神经干/祖细胞(NS / PC)可以生成各种各样的神经细胞。但是,它们的命运通常受到限制,具体取决于NS / PC起源的时间和位置。在这里,我们证明了我们可以通过使用基于神经球的胚胎干(ES)细胞来源的NS / PCs培养系统,概述体外中枢神经系统(CNS)发育的时空调节。该ES细胞来源的神经球系统能够以早期的时间特征和高细胞命运的可塑性高效衍生高度神经源性成纤维细胞生长因子的NS / PC。经过反复传代,这些NS / PCs显示出时间进展,成为表皮生长因子反应性胶质发生性NS / PCs,具有较晚的时间特征。这种变化伴随着神经胶质纤维酸性蛋白启动子的表观遗传状态的改变,与在发育中的大脑中观察到的相似。此外,可以通过顺序施用几种形态发生素来成功地调节NS / PC的鼻尾和背腹的空间特性。这些NS / PC可以分化为早期表现出的投射神经元,包括胆碱能,儿茶酚胺能,血清素能和运动神经元,它们在体外具有动作电位。最后,这些NS / PCs分化为神经元,这些神经元在移植入野生型和疾病模型动物后与宿主神经元形成突触接触。因此,该培养系统可用于从ES细胞获得特定的神经元,是研究中枢神经系统发育的潜在机制的简单而强大的工具,可用于神经系统疾病的再生治疗。

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