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Neural Differentiation of P19 Carcinoma Cells and Primary Neurospheres: Cell Morphology, Proliferation, Viability, and Functionality

机译:P19癌细胞和主要神经球的神经分化:细胞形态,增殖,生存力和功能。

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摘要

This unit describes the culture and induction of in vitro models of neural differentiation and strategies to evaluate the participation of extrinsic and intrinsic factors in modulation of this process. Protocols focus on large-scale expansion of pluripotent P19 murine embryonic carcinoma cells and their induction to neural differentiation in the presence of retinoic acid, closely resembling conditions of early neuroectodermal differentiation. Procedures are also described for obtaining rat neural precursor cells (NPCs) or neurospheres and for differentiating them in the absence of growth factors. Experimental strategies are reported using P19 cells and NPCs as in vitro models for studying the actions of extrinsic and intrinsic factors on morphology, proliferation, viability, neural phenotype determination, and progress of differentiation, as well as the functionality of ion channels and metabotropic receptors in inducing calcium fluxes at different developmental stages. The methods described here may be useful for optimizing in vitro protocols for stem cell differentiation into defined neural populations, as well as for studying mechanisms that underlie neurogenesis and gliogenesis.
机译:本单元介绍了神经分化体外模型的培养和诱导以及评估外部和内在因素参与该过程调节的策略。协议集中于多能性P19鼠胚胎癌细胞的大规模扩增及其在视黄酸存在下对神经分化的诱导,与早期神经外胚层分化的条件非常相似。还描述了获得大鼠神经前体细胞(NPC)或神经球并在不存在生长因子的情况下使其分化的程序。报道了使用P19细胞和NPC作为体外模型的实验策略,以研究外在和内在因素对形态,增殖,生存力,神经表型确定和分化进展以及离子通道和代谢型受体功能的作用。在不同的发育阶段诱导钙通量。此处描述的方法对于优化将干细胞分化为确定的神经群体的体外方案,以及研究作为神经发生和神经胶质形成基础的机制可能有用。

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