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Modulation of the generation of dopaminergic neurons from human neural stem cells by Bcl-X(L): mechanisms of action.

机译:Bcl-X(L)对人类神经干细胞多巴胺能神经元生成的调节:作用机理。

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摘要

Understanding the developmental mechanisms governing dopaminergic neuron generation and maintenance is crucial for the development of neuronal replacement therapeutic procedures, like in Parkinson's disease (PD), but also for research aimed at drug screening and pharmacology. In the present chapter, we review the present situation using stem cells of different origins (pluripotent and multipotent) and summarize current manipulations of stem cells for the enhancement of dopaminergic neuron generation, focusing on the actions of Bcl-X(L). Bcl-X(L) not only enhances dopaminergic neuron survival but also augments the expression of key developmental and maintenance genes, and, through the lengthening of the cell cycle early during differentiation, regulates cell fate decisions, producing a net enhancement of neurogenesis. The relevance of these findings is discussed in the context of basic neurogenesis and also for the development of efficient cell therapy in PD.
机译:了解控制多巴胺能神经元生成和维持的发育机制对于神经元替代治疗程序(如帕金森氏病(PD))的开发至关重要,而且对于旨在药物筛选和药理学的研究也至关重要。在本章中,我们回顾了使用不同来源(多能和多能)干细胞的现状,并总结了目前为增强多巴胺能神经元生成而对干细胞的操作,重点是Bcl-X(L)的作用。 Bcl-X(L)不仅增强了多巴胺能神经元的存活,而且还增强了关键发育和维持基因的表达,并且通过在分化过程中早期延长细胞周期来调节细胞命运决定,从而净增强神经发生。这些发现的相关性在基本神经发生的背景下讨论,也与PD中有效细胞治疗的发展有关。

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