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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Region-specific generation of functional neurons from naive embryonic stem cells in adult brain.
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Region-specific generation of functional neurons from naive embryonic stem cells in adult brain.

机译:从成年幼稚的幼稚胚胎干细胞中特定区域产生功能性神经元。

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Embryonic stem (ES) cells are multipotent progenitors with unlimited developmental potential, and in vitro differentiated ES cell-derived neuronal progenitors can develop into functional neurons when transplanted in the central nervous system. As the capacity of naive primary ES cells to integrate in the adult brain and the role of host neural tissue therein are yet largely unknown, we grafted low densities of undifferentiated mouse ES (mES) cells in adult mouse brain regions associated with neurodegenerative disorders; and we demonstrate that ES cell-derived neurons undergo gradual integration in recipient tissue and acquire morphological and electrophysiological properties indistinguishable from those of host neurons. Only some brain areas permitted survival of mES-derived neural progenitors and formed instructive environments for neuronal differentiation and functional integration of naive mES cells. Hence, region-specific presence of microenvironmental cues and their pivotal involvement in controlling ES cell integration in adult brain stress the importance of recipient tissue characteristics in formulating cell replacement strategies for neurodegenerative disorders.
机译:胚胎干(ES)细胞是具有无限发展潜力的多能祖细胞,体外分化为ES细胞的神经元祖细胞移植到中枢神经系统后可以发育为功能性神经元。由于幼稚的原代ES细胞在成年大脑中整合的能力以及宿主神经组织在其中的作用仍是未知之数,我们将低密度的未分化小鼠ES(mES)细胞移植到与神经退行性疾病相关的成年小鼠大脑区域;并且我们证明了ES细胞衍生的神经元在受体组织中逐渐整合,并获得了与宿主神经元无法区别的形态和电生理特性。仅某些大脑区域允许mES来源的神经祖细胞存活,并为神经元分化和朴素的mES细胞的功能整合形成了指导性环境。因此,微环境线索的区域特定存在及其在控制成人脑中ES细胞整合中的关键作用,在制定神经退行性疾病的细胞替代策略中,强调了受体组织特性的重要性。

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