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Increase of proliferating oligodendroglial progenitors in the adult mouse brain upon Sonic hedgehog delivery in the lateral ventricle

机译:音速刺猬在侧脑室递送后成年小鼠大脑中增殖性少突胶质祖细胞的增加

摘要

Sonic hedgehog signaling is required for the maintenance of stem cell niches in the postnatal subventricular zone and the proliferation of neural progenitors in the mature hippocampus. We show here that delivery of Sonic hedgehog protein into the lateral ventricle of adult mice increases cell proliferation in the corpus callosum and cerebral cortex. In this latter area, the number of neural progenitors expressing the proteoglycan NG2 is enhanced 2 days after the injection. In both areas, mRNA up-regulation of the transcriptional target gene Patched was observed in cells expressing the oligodendroglial transcription factor Olig1. Twenty-six days following the adenovirus-mediated delivery of Sonic hedgehog into the lateral ventricle, newly generated cells in the cerebral cortex and in the corpus callosum are influenced towards the initial steps of oligodendrogenesis, as indicated by a 50% increase in the number of cells expressing the oligodendroglial marker DM20. Our experiments demonstrate that the number of oligodendrocyte precursor cells in the cerebral cortex and corpus callosum can be increased upon delivery of Sonic hedgehog proteins and highlight the potential capacity of the adult brain to mobilize a pool of premyelinating cells.
机译:声波刺猬信号是维持出生后脑室下区干细胞生态位和成熟海马中神经祖细胞增殖所必需的。我们在这里显示将Sonic刺猬蛋白递送到成年小鼠的侧脑室会增加call体和大脑皮层中的细胞增殖。在后一个区域,注射蛋白后2天,表达蛋白聚糖NG2的神经祖细胞数量增加。在这两个区域中,在表达少突胶质细胞转录因子Olig1的细胞中均观察到了转录靶基因Patched的mRNA上调。腺病毒介导的声波刺猬进入侧脑室后的第二十六天,大脑皮层和call体中新生成的细胞会向少突胶质形成的初始阶段产生影响,这表明少突胶质生成的数量增加了50%表达少突胶质标记DM20的细胞。我们的实验表明,在递送Sonic刺猬蛋白后,大脑皮层和体中少突胶质前体细胞的数量会增加,并突显了成年大脑动员前髓鞘细胞的潜力。

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