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In vitro growth and proliferation of genetically modified multipotent neural stem cells and their progeny

机译:转基因多能神经干细胞及其后代的体外生长与增殖

摘要

A method for producing genetically modified neural cells comprises culturing cells derived from embryonic, juvenile, or adult mammalian neural tissue with one or more growth factors that induce multipotent neural stem cells to proliferate and produce multipotent neural stem cell progeny which include more daughter multipotent neural stem cells and undifferentiated progeny that are capable of differentiating into neurons, astrocytes, and oligodendrocytes. The proliferating neural cells can be transfected with exogenous DNA to produce genetically modified neural stem cell progeny. The genetic modification can be for the production of biologically useful proteins such as growth factor products, growth factor receptors, neurotransmitters, neurotransmitter receptors, neuropeptides and neurotransmitter synthesizing genes. The multipotent neural stem cell progeny can be continuously passaged and proliferation reinitiated in the presence of growth factors to result in an unlimited supply of neural cells for transplantation and other purposes. Culture conditions can be provided that induce the genetically modified multipotent neural stem cell progeny to differentiate into neurons, astrocytes, and oligodendrocytes in vitro.
机译:一种产生转基因神经细胞的方法,包括用一种或多种生长因子培养衍生自胚胎,幼年或成年哺乳动物神经组织的细胞,所述生长因子诱导多能神经干细胞增殖并产生多能神经干细胞后代,其中包括更多子代多能神经干。能够分化为神经元,星形胶质细胞和少突胶质细胞的细胞和未分化后代。可以用外源DNA转染增殖的神经细胞以产生基因修饰的神经干细胞后代。基因修饰可用于产生生物学上有用的蛋白质,例如生长因子产物,生长因子受体,神经递质,神经递质受体,神经肽和神经递质合成基因。多能神经干细胞后代可以在存在生长因子的情况下连续传代并重新开始增殖,从而为移植和其他目的提供了无限量的神经细胞。可以提供培养条件,在体外诱导转基因的多能神经干细胞后代分化为神经元,星形胶质细胞和少突胶质细胞。

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