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Voluntary wheel running promotes myelination in the motor cortex through Wnt signaling in mice

机译:自愿性轮转通过Wnt信号在小鼠中促进运动皮层的髓鞘形成

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摘要

Myelin of the central nervous system exhibits strong plasticity, and skill learning exercise promotes oligodendrogenesis and adaptive myelination. Increasing evidence shows that brain structures and functions are affected by physical activity. However, the impact of voluntary physical activity on central myelination and its underlying mechanism remains unclear. The present study aimed to investigate the effect of voluntary wheel running (VWR) on central oligodendrogenesis and adaptive myelination in mice. Adult C57BL/6 J mice were placed in running wheels and allowed for voluntary running 2 weeks. Myelin levels in the central nervous system were detected using western blotting, qRT-PCR, immunohistochemical staining, and electron microscopy. Oligodendrocyte precursor cells (OPCs) and oligodendrocytes (OLs) were detected using immunohistochemical staining and 5-bromo-2-deoxyuridine (BrdU) assays. Motor abilities of the animals were examined using open-field, rotarod running, and beam-walking behavioral paradigms. Vital molecules of Wnt signaling were detected, and the involvement of such molecules was verified using in vitro culture of OPCs. Our results showed that VWR significantly enhanced the myelination in the motor cortex. VWR promoted the proliferation and differentiation of OPCs, and the maturation of OLs. The VWR-regulated myelination was associated with the improved motor skill and decreased mRNA level of Wnt3a/9a, whereas stimulation of Wnt signaling pathway with Wnt3a or Wnt9a suppressed OPCs proliferation and differentiation in vitro. The present study demonstrated that physical activity is highly efficient at promoting myelination in the motor cortex, by enhancing the proliferation of OPCs and accelerating the generation of myelin, providing a step forward in understanding the beneficial effects of physical activity on central myelination and its underlying mechanism.
机译:中枢神经系统的髓磷脂具有很强的可塑性,技能学习锻炼可促进少突胶质生成和适应性髓鞘形成。越来越多的证据表明,大脑结构和功能受体育锻炼的影响。但是,自愿体育锻炼对中央髓鞘形成及其基本机制的影响尚不清楚。本研究旨在调查自主轮转运动(VWR)对小鼠中枢少突形成和适应性髓鞘形成的影响。将成年C57BL / 6 J小鼠放在跑轮上,让其自愿跑2周。使用蛋白质印迹,qRT-PCR,免疫组织化学染色和电子显微镜检测中枢神经系统中的髓磷脂水平。使用免疫组织化学染色和5-溴-2-脱氧尿苷(BrdU)分析检测少突胶质前体细胞(OPC)和少突胶质细胞(OL)。使用开阔地,轮转式跑步和束步行为范例检查了动物的运动能力。检测到Wnt信号的重要分子,并使用OPC的体外培养验证了此类分子的参与。我们的结果表明,VWR显着增强了运动皮层的髓鞘形成。 VWR促进了OPC的增殖和分化以及OL的成熟。 VWR调节的髓鞘形成与提高运动技能和降低Wnt3a / 9a的mRNA水平有关,而用Wnt3a或Wnt9a刺激Wnt信号通路抑制了体外OPC的增殖和分化。本研究表明,体育锻炼通过增强OPC的增殖和加速髓鞘的生成,在促进运动皮层的髓鞘形成方面非常有效,为进一步理解体育锻炼对中央髓鞘形成及其基础机制的作用提供了新的进步。

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