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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Adult neural stem cells from the mouse subventricular zone are limited in migratory ability compared to progenitor cells of similar origin.
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Adult neural stem cells from the mouse subventricular zone are limited in migratory ability compared to progenitor cells of similar origin.

机译:与相似来源的祖细胞相比,来自小鼠脑室下区的成年神经干细胞的迁移能力受到限制。

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摘要

The subventricular zone (SVZ) in the forebrain is the largest source of neural stem cells and progenitor cells in the adult CNS. To assess the ability of adult neural stem cells to survive, differentiate and migrate, we have compared the behavior of dissociated, neurosphere-derived stem cells with that of progenitor cells in transplantation experiments. This ability was first tested in vivo, offering the stem cells the possibility to migrate along the rostral migratory stream (RMS), their specific pathway. In addition, the differential behaviors of the two classes of cells were also compared in vitro by grafting them into organotypic slice cultures containing either tangential (embryonic cerebral cortex) or radial (early postnatal cerebellar cortex) migratory routes. Most of the grafted adult neurosphere-derived stem cells survived and integrated in vivo, and a proportion of them differentiate into neurons, oligodendrocytes or astrocytes. However, they were unable to migrate along the RMS and remained in the vicinity of the injection site. In contrast, SVZ progenitor cells were able to migrate toward the olfactory bulb and, once there, to acquire the phenotype of granule cells, as previously reported. In vitro, neural stem cells exhibited a better migratory ability, although they only migrated for short distances, particularly, in forebrain slices. Nevertheless, the average distance covered by progenitor cells was a two-fold longer than that covered by neural stem cells, corroborating that this class of more specified cells has higher migratory ability. These results suggest that the in vitro conditions of expanding SVZ-derived stem cells, required to maintain them in an immature stage might modify their intrinsic properties, preventing their differentiation into neuroblasts and their subsequent migration.
机译:前脑中的脑室下区(SVZ)是成人CNS中神经干细胞和祖细胞的最大来源。为了评估成年神经干细胞存活,分化和迁移的能力,我们在移植实验中比较了离体的神经球干细胞与祖细胞的行为。这项功能首先在体内进行了测试,为干细胞提供了沿着其特定途径的鼻迁移流(RMS)迁移的可能性。此外,还通过将它们移植到包含切向(胚胎性大脑皮层)或放射状(出生后小脑皮层)迁移途径的器官型切片培养物中,比较了两类细胞的差异行为。大多数移植的成人神经球干细胞在体内存活并整合,其中一部分分化为神经元,少突胶质细胞或星形胶质细胞。但是,它们无法沿RMS迁移并留在注射部位附近。相反,SVZ祖细胞能够向嗅球迁移,并且一旦到达那里,就能够获得颗粒细胞的表型,如先前报道的那样。在体外,神经干细胞显示出更好的迁移能力,尽管它们仅迁移短距离,尤其是在前脑切片中。然而,祖细胞所覆盖的平均距离是神经干细胞所覆盖的平均距离的两倍,这证实了这类更多特定细胞具有更高的迁移能力。这些结果表明,将SVZ衍生的干细胞维持在未成熟阶段所需的体外条件可能会改变其固有特性,从而阻止其分化为成神经细胞和随后的迁移。

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