首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Radial glial cell transformation to astrocytes is bidirectional: regulation by a diffusible factor in embryonic forebrain.
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Radial glial cell transformation to astrocytes is bidirectional: regulation by a diffusible factor in embryonic forebrain.

机译:星形胶质细胞向星形胶质细胞的转化是双向的:由胚胎前脑中的扩散因子调节。

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摘要

During development of mammalian cerebral cortex, two classes of glial cells are thought to underlie the establishment of cell patterning. In the embryonic period, migration of young neurons is supported by a system of radial glial cells spanning the thickness of the cortical wall. In the neonatal period, neuronal function is assisted by the physiological support of a second class of astroglial cell, the astrocyte. Here, we show that expression of embryonic radial glial identity requires extrinsic soluble signals present in embryonic forebrain. Moreover, astrocytes reexpress features of radial glia in vitro in the presence of the embryonic cortical signals and in vivo after transplantation into embryonic neocortex. These findings suggest that the transformation of radial glia cells into astrocytes is regulated by availability of inducing signals rather than by changes in cell potential.
机译:在哺乳动物大脑皮层的发育过程中,两类神经胶质细胞被认为是细胞模式建立的基础。在胚胎期,年轻的神经元的迁移是由跨越皮层壁厚度的放射状胶质细胞系统支持的。在新生儿期,神经元功能由第二类星形胶质细胞星形胶质细胞的生理支持来辅助。在这里,我们显示胚胎radial神经胶质身份的表达需要存在于胚胎前脑中的外部可溶信号。此外,星形胶质细胞在存在胚胎皮层信号的情况下在体外和在体内移植到胚胎新皮层后在体内重新表达radial神经胶质细胞的特征。这些发现表明,放射状胶质细胞向星形胶质细胞的转化是由诱导信号的可用性而不是由细胞电位的变化来调节的。

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