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首页> 外文期刊>Frontiers in Physiology >Human Dental Pulp Stem Cells Grown in Neurogenic Media Differentiate Into Endothelial Cells and Promote Neovasculogenesis in the Mouse Brain
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Human Dental Pulp Stem Cells Grown in Neurogenic Media Differentiate Into Endothelial Cells and Promote Neovasculogenesis in the Mouse Brain

机译:神经源性培养基中生长的人类牙髓干细胞分化为内皮细胞并促进小鼠脑血管新生

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摘要

Dental pulp stem cells (DPSCs) have the capacity to give rise to cells with neuronal-like phenotypes, suggesting their use in brain cell therapies. In the present work, we wanted to address the phenotypic fate of adult genetically unmodified human DPSCs cultured in Neurocult ~(TM) (Stem Cell Technologies), a cell culture medium without serum which can be alternatively supplemented for the expansion and/or differentiation of adult neural stem cells (NSCs). Our results show that non-genetically modified human adult DPSCs cultured with Neurocult NS-A proliferation supplement generated neurosphere-like dentospheres expressing the NSC markers Nestin and glial fibrillary acidic protein (GFAP), but also the vascular endothelial cell marker CD31. Remarkably, 1 month after intracranial graft into athymic nude mice, human CD31+/CD146+ and Nestin+ DPSC-derived cells were found tightly associated with both the endothelial and pericyte layers of brain vasculature, forming full blood vessels of human origin which showed an increased laminin staining. These results are the first demonstration that DPSC-derived cells contributed to the generation of neovasculature within brain tissue, and that Neurocult and other related serum-free cell culture media may constitute a fast and efficient way to obtain endothelial cells from human DPSCs.
机译:牙髓干细胞(DPSC)具有产生具有神经元样表型的细胞的能力,表明它们可用于脑细胞治疗。在目前的工作中,我们想解决在Neurocult〜(TM)(Stem Cell Technologies)(一种无血清的细胞培养基)中培养的成年基因未经修饰的人DPSC的表型命运,该培养基不含血清,可以替代性地补充其的扩增和/或分化。成人神经干细胞(NSC)。我们的结果表明,用Neurocult NS-A增殖补品培养的非基因修饰的成人DPSC产生了神经球样牙周球,表达NSC标志物Nestin和神经胶质纤维酸性蛋白(GFAP),还表达了血管内皮细胞标志物CD31。值得注意的是,在颅内移植到无胸腺裸鼠中1个月后,发现人类CD31 + / CD146 +和Nestin + DPSC衍生的细胞与脑血管的内皮层和周细胞层紧密相关,形成了人类起源的全血管,显示层粘连蛋白染色增加。这些结果是第一个证明,DPSC衍生的细胞有助于脑组织内新脉管系统的生成,并且Neurocult和其他相关的无血清细胞培养基可能构成从人DPSC获得内皮细胞的快速有效方式。

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