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Neuron-to-Astrocyte Transition: Phenotypic Fluidity and the Formation of Hybrid Asterons in Differentiating Neurospheres

机译:神经元到星形胶质细胞的过渡:表型流动性和分化的神经球中混合的 Asterons的形成。

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摘要

To the extent that their fate choice and differentiation processes can be understood and manipulated, neural stem cells represent a promising therapeutic tool for a variety of neuropathologies. We have previously shown that mature astrocytes possess neural stem cell attributes, and can give rise to neurons through the formation of multipotent neurosphere clones. Here we show that relatively mature neurons generated from neurospheres derived from postnatal subependymal zone or cerebellar cortex undergo a phenotypic transformation into astrocytes that coincides with the appearance of a non-fused, hybrid cell type that shares the morphology, antigenicity, and physiology of both neurons and astrocytes. We refer to this astrocyteeuron hybrid as an “asteron”, and hypothesize that it represents an intermediate step in the trans- or de-differentiation of neurons into astrocytes. The present finding suggests that seemingly terminally differentiated neural cells may in fact represent points along a bi-directionally fluid continuum of differentiation, with intermediate points represented by “hybrid” cells co-expressing phenotypic markers of more than one lineage.
机译:就其命运选择和分化过程可以理解和操纵的程度而言,神经干细胞代表了各种神经病理学的有前途的治疗工具。先前我们已经表明,成熟的星形胶质细胞具有神经干细胞属性,并且可以通过形成多能神经球克隆来产生神经元。在这里,我们显示从出生后室管膜下区域或小脑皮质的神经球产生的相对成熟的神经元经过表型转化为星形胶质细胞,与非融合的混合细胞类型(具有两种神经元的形态,抗原性和生理特性)相符和星形胶质细胞。我们将这种星形胶质细胞/神经元杂交体称为“星形细胞”,并假设它代表了神经元向星形胶质细胞的转分化或去分化中的中间步骤。目前的发现表明,看似终末分化的神经细胞实际上可以代表双向分化连续体中的点,中间点由共同表达一种以上谱系的表型标记的“杂交”细胞代表。

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