Spatial Heterogeneity in Myelin Sheathing Impacts Signaling Reliability and Susceptibility to Injury.

IF 2.7 3区 医学 Q3 NEUROSCIENCES eNeuro Pub Date : 2025-02-14 Print Date: 2025-02-01 DOI:10.1523/ENEURO.0402-24.2025
Afroditi Talidou, Jérémie Lefebvre
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Abstract

Axons in the mammalian brain show significant diversity in myelination motifs, displaying spatial heterogeneity in sheathing along individual axons and across brain regions. However, its impact on neural signaling and susceptibility to injury remains poorly understood. To address this, we leveraged cable theory and developed model axons replicating the myelin sheath distributions observed experimentally in different regions of the mouse central nervous system. We examined how the spatial arrangement of myelin affects propagation and predisposition to conduction failure in axons with cortical versus callosal myelination motifs. Our results indicate that regional differences in myelination significantly influence conduction timing and signaling reliability. Sensitivity of action potential propagation to the specific positioning, lengths, and ordering of myelinated and exposed segments reveals non-linear and path-dependent conduction. Furthermore, myelination motifs impact signaling vulnerability to demyelination, with callosal motifs being particularly sensitive to myelin changes. These findings highlight the crucial role of myelinating glia in brain function and disease.

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髓鞘的空间异质性影响信号的可靠性和损伤的易感性。
哺乳动物大脑中的轴突在髓鞘形成基序上表现出显著的多样性,沿单个轴突和跨脑区域的鞘鞘表现出空间异质性。然而,其对神经信号传导和损伤易感性的影响仍然知之甚少。为了解决这个问题,我们利用电缆理论并开发了模型轴突,复制了在小鼠中枢神经系统不同区域实验观察到的髓鞘分布。我们研究了髓鞘的空间排列如何影响皮层髓鞘与胼胝体髓鞘轴突的增殖和传导失败的倾向。我们的研究结果表明,髓鞘形成的区域差异显著影响传导时间和信号可靠性。动作电位传播对特定位置、长度和有髓鞘和暴露节段的顺序的敏感性揭示了非线性和路径依赖的传导。此外,髓鞘形成基序影响信号易感性脱髓鞘,胼胝体基序对髓鞘变化特别敏感。这些发现突出了髓鞘胶质在脑功能和疾病中的关键作用。本研究强调髓鞘的空间异质性在神经轴突传导形成中的重要性。使用忠实地复制在小鼠中枢神经系统中观察到的髓磷脂分布的模型轴突,我们的结果揭示了髓磷脂模式对神经信号的时间和可靠性的影响。与传统观点相反,均匀和等间距的髓鞘段意味着线性传导,我们的研究结果表明轴突传导是一个路径依赖的非线性过程,受有髓鞘和无髓鞘段特定分布的影响。研究发现,与皮层相比,胼胝体沿模型轴突的膜电位传播更容易受到髓磷脂变化的影响,尤其是髓磷脂损伤后,这强调了鞘在健康和疾病中的作用。
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来源期刊
eNeuro
eNeuro Neuroscience-General Neuroscience
CiteScore
5.00
自引率
2.90%
发文量
486
审稿时长
16 weeks
期刊介绍: An open-access journal from the Society for Neuroscience, eNeuro publishes high-quality, broad-based, peer-reviewed research focused solely on the field of neuroscience. eNeuro embodies an emerging scientific vision that offers a new experience for authors and readers, all in support of the Society’s mission to advance understanding of the brain and nervous system.
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