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Oligodendrocyte Precursor Cell Transplantation into Organotypic Cerebellar Shiverer Slices: A Model to Study Myelination and Myelin Maintenance

机译:少突胶质细胞前体细胞移植入器官型小脑颤抖片:研究髓鞘形成和髓鞘维持的模型。

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摘要

Current in vitro models to investigate the consequence of oligodendrocyte-specific loss-of-function mutations on myelination are primarily limited to co-culture experiments, which do not accurately recapitulate the complex in vivo environment. Here, we describe the development of an in vitro model of myelination and myelin maintenance in which oligodendrocyte precursor cells are transplanted into organotypic cerebellar slice cultures derived from dysmyelinated shiverer mice. Compared to neuron-oligodendrocyte co-cultures, organotypic slices more closely mimic the environment in vivo, while utilizing a genetic background that allows for straight-forward identification of myelin generated by transplanted cells. We show at the ultrastructural level that the myelin generated by wild-type transplanted oligodendrocytes is compact and terminates in cytoplasmic loops that form paranodal junctions with the axon. This myelination results in the appropriate sequestering of axonal proteins into specialized domains surrounding the nodes of Ranvier. We also demonstrate the applicability of this approach for xenograft transplantation of oligodendrocyte precursor cells derived from rat or human sources. This method provides a time-efficient and cost-effective adjunct to conditional knockout mouse lines or in vivo transplantation models to study oligodendrocyte-specific loss-of-function mutations. Furthermore, the approach can be readily used to assess the effect of pharmacological manipulations on myelin, providing a tool to better understand myelination and develop effective therapeutic strategies to treat myelin-related diseases.
机译:目前用于研究少突胶质细胞特定功能丧失突变对髓鞘形成的后果的体外模型主要限于共培养实验,该实验不能准确地概括复杂的体内环境。在这里,我们描述了髓鞘形成和髓鞘维持的体外模型的发展,其中少突胶质细胞前体细胞被移植到衍生自脱髓鞘的颤抖小鼠的器官型小脑切片培养物中。与神经元-少突胶质细胞共培养相比,器官型切片更接近地模拟了体内环境,同时利用了遗传背景,可以直接鉴定移植细胞产生的髓磷脂。我们在超微结构水平上显示由野生型移植的少突胶质细胞产生的髓磷脂是紧凑的,并终止于与轴突形成节旁结的胞质环。这种髓鞘化导致将轴突蛋白适当隔离到围绕Ranvier结的专门域中。我们还证明了这种方法适用于大鼠或人类来源的少突胶质前体细胞的异种移植。该方法为条件基因敲除小鼠品系或体内移植模型提供了省时,省钱的辅助手段,以研究少突胶质细胞特异性功能丧失突变。此外,该方法可以很容易地用于评估药理学操作对髓磷脂的作用,为更好地了解髓鞘形成和开发有效的治疗策略以治疗髓鞘相关疾病提供了一种工具。

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