边界帽神经嵴干细胞在体外和体内分化为成熟施万细胞。

In vitro and in vivo differentiation of boundary cap neural crest stem cells into mature Schwann cells.

作者信息

Aquino Jorge B, Hjerling-Leffler Jens, Koltzenburg Martin, Edlund Thomas, Villar Marcelo J, Ernfors Patrik

机构信息

Unit of Molecular Neurobiology-MBB, Karolinska Institutet, Scheeles vag 1 A1:2, 171 77 Stockholm, Sweden.

出版信息

Exp Neurol. 2006 Apr;198(2):438-49. doi: 10.1016/j.expneurol.2005.12.015. Epub 2006 Jan 25.

Abstract

Boundary cap cells can generate neurons as well as peripheral glia during embryonic development (Maro, G.S., Vermeren, M., Voiculescu, O., Melton, L., Cohen, J., Charnay, P., Topilko, P., 2004. Neural crest boundary cap cells constitute a source of neuronal and glial cells of the PNS. Nat Neurosci. 7 (9), 930-938), and, recently, the boundary cap was shown to contain multipotent stem cells (Hjerling-Leffler, J., Marmigère, F., Heglind, M., Cederberg, A., Koltzenburg, M., Enerbäck, S., Ernfors, P., 2005. The boundary cap, a source of neural crest stem cells generating multiple sensory neuron subtypes. Development. 132 (11), 2623-2632). The ability of stem cells to generate mature functional glial phenotypes has not been addressed. In this study, we have explored the competence of boundary neural crest stem cells (bNCSCs) to differentiate into mature functional Schwann cells (SCs) in vitro and in vivo. bNCSCs failed to differentiate into SCs in vitro when cultured in a defined media and in vivo when grafted into adult rat sciatic nerves. However, in the presence of neuregulins, during long-term cultures, the majority of bNCSCs differentiated into SCs. After analysis of the in vivo expression of Sox2, Sox10, S100, GFAP, fibronectin and Krox20 in the glial lineages, we used these markers to characterize differentiation of the bNCSCs. Gliogenesis of bNCSCs proceeded similar to that in vivo by sequentially adopting a SC precursor and immature Schwann cell before maturing into myelinating and non-myelinating SCs. In co-culture with explanted dorsal root ganglia (DRG) as well as in vivo in transplants to the axotomized sciatic nerve, these bNCSC-derived SCs myelinated axons as shown by ensheathing of neuronal processes and expression of myelin basic proteins (MBP). These results show that, under appropriate conditions, bNCSCs can generate mature SCs that are functional and can myelinate axons in regenerating nerves.

摘要

边界帽细胞在胚胎发育过程中能够产生神经元以及外周神经胶质细胞(Maro, G.S., Vermeren, M., Voiculescu, O., Melton, L., Cohen, J., Charnay, P., Topilko, P., 2004. 神经嵴边界帽细胞构成周围神经系统神经元和神经胶质细胞的一个来源。《自然神经科学》。7 (9), 930 - 938),并且,最近研究表明边界帽含有多能干细胞(Hjerling-Leffler, J., Marmigère, F., Heglind, M., Cederberg, A., Koltzenburg, M., Enerbäck, S., Ernfors, P., 2005. 边界帽,产生多种感觉神经元亚型的神经嵴干细胞来源。《发育》。132 (11), 2623 - 2632)。干细胞产生成熟功能性神经胶质表型的能力尚未得到研究。在本研究中,我们探讨了边界神经嵴干细胞(bNCSCs)在体外和体内分化为成熟功能性雪旺细胞(SCs)的能力。当在限定培养基中培养时,bNCSCs在体外无法分化为SCs,当移植到成年大鼠坐骨神经中时,在体内也无法分化为SCs。然而,在神经调节蛋白存在的情况下,经过长期培养,大多数bNCSCs分化为SCs。在分析了神经胶质谱系中Sox2、Sox10、S100、GFAP、纤连蛋白和Krox20的体内表达后,我们使用这些标志物来表征bNCSCs的分化。bNCSCs的神经胶质生成过程与体内相似,依次形成雪旺细胞前体和未成熟雪旺细胞,然后成熟为有髓鞘和无髓鞘的雪旺细胞。在与外植背根神经节(DRG)共培养以及移植到切断坐骨神经的体内实验中,这些源自bNCSCs的雪旺细胞使轴突形成髓鞘,这表现为包绕神经元突起以及髓鞘碱性蛋白(MBP)的表达。这些结果表明,在适当条件下,bNCSCs能够产生成熟的、具有功能且能够在再生神经中使轴突形成髓鞘的雪旺细胞。

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