Pang Yi, Simpson Kimberly, Miguel-Hidalgo José Javier, Savich Renate
Department of Pediatrics, University of Mississippi Medical Center, Jackson, MS, USA.
Department of Neurobiology and Anatomical Sciences, University of Mississippi Medical Center, Jackson, MS, USA.
Methods Mol Biol. 2018;1791:131-144. doi: 10.1007/978-1-4939-7862-5_10.
Myelination cell culture systems are useful tools for studying myelin biology and myelin-related disorders. Compared to a number of established protocols for dissociated pure oligodendrocyte (OL) culture, methods for myelination culture are limited. We recently developed a mixed neuron-glia coculture system that generates robust and efficient myelination. By optimizing cell culture conditions, dissociated neural progenitor cells from embryonic rat spinal cords develop into neurons and glial cells including profiles of oligodendrocyte (OL) lineage. Within 4 weeks, OL progenitor cells (OPC) proliferate, differentiate into mature OLs, and myelinate axons. The formation of compact myelin sheath is confirmed by electron microscopy. For morphological analysis by light microscopy, cells grown on glass coverslips are fixed and immunostained for various myelin-related proteins, including those embedded within the myelin sheath and those clustered at the node of Ranvier. Myelinated axons can be quantified readily by either manual counting or ImageJ software. The culture system may also be used for electron microscopic analysis by slightly modifying the cell culture procedure.
髓鞘形成细胞培养系统是研究髓鞘生物学和髓鞘相关疾病的有用工具。与许多已建立的用于解离纯少突胶质细胞(OL)培养的方案相比,髓鞘形成培养的方法有限。我们最近开发了一种混合神经元-神经胶质共培养系统,该系统能产生强大而高效的髓鞘形成。通过优化细胞培养条件,来自胚胎大鼠脊髓的解离神经祖细胞可发育成神经元和神经胶质细胞,包括少突胶质细胞(OL)谱系的细胞形态。在4周内,OL祖细胞(OPC)增殖,分化为成熟的OL,并使轴突髓鞘化。通过电子显微镜确认致密髓鞘的形成。对于光学显微镜的形态学分析,将生长在玻璃盖玻片上的细胞固定并用各种髓鞘相关蛋白进行免疫染色,包括那些嵌入髓鞘内的蛋白和那些聚集在郎飞结处的蛋白。有髓轴突可以通过手动计数或ImageJ软件轻松定量。通过对细胞培养程序进行轻微修改,该培养系统也可用于电子显微镜分析。