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Coculture of Primary Motor Neurons and Schwann Cells as a Model for In Vitro Myelination

机译:原代运动神经元和雪旺氏细胞的共培养作为体外髓鞘形成的模型

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A culture system that can recapitulate myelination in vitro will not only help us better understand the mechanism of myelination and demyelination, but also find out possible therapeutic interventions for treating demyelinating diseases. Here, we introduce a simple and reproducible myelination culture system using mouse motor neurons (MNs) and Schwann cells (SCs). Dissociated motor neurons are plated on a feeder layer of SCs, which interact with and wrap around the axons of MNs as they differentiate in culture. In our MN-SC coculture system, MNs survived over 3 weeks and extended long axons. Both viability and axon growth of MNs in the coculture were markedly enhanced as compared to those of MN monoculture. Co-labeling of myelin basic proteins (MBPs) and neuronal microtubules revealed that SC formed myelin sheaths by wrapping around the axons of MNs. Furthermore, using the coculture system we found that treatment of an antioxidant substance coenzyme Q10 (Co-Q10) markedly facilitated myelination.
机译:可以在体外概括髓鞘形成的培养系统,不仅可以帮助我们更好地了解髓鞘形成和脱髓鞘的机制,而且可以找到治疗脱髓鞘疾病的可能治疗手段。在这里,我们介绍使用鼠标运动神经元(MNs)和雪旺氏细胞(SCs)的简单和可重复的髓鞘培养系统。解离的运动神经元镀在SC的饲养层上,当它们在培养物中分化时,它们与MN的轴突相互作用并包裹它们。在我们的MN-SC共培养系统中,MN存活了3周以上,并延长了长轴突。与MN单培养相比,共培养中MN的生存力和轴突生长均显着增强。髓鞘碱性蛋白(MBPs)和神经元微管的共同标记显示,SC通过包裹MN的轴突形成髓鞘。此外,使用共培养系统,我们发现抗氧化剂物质辅酶Q10(Co-Q10)的处理显着促进了髓鞘形成。

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