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Correlation between electrophysiological properties, morphological maturation, and olig gene changes during postnatal motor tract development

机译:产后运动系统发育过程中电生理特性,形态成熟度和寡基因变化之间的相关性

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This study investigated electrophysiological and histological changes as well as alterations of myelin relevant proteins of descending motor tracts in rat pups. Motor-evoked potentials (MEPs) represent descending conducting responses following stimulation of the motor cortex to responses being elicited from the lower extremities. MEP responses were recorded biweekly from postnatal (PN) week 1 to week 9 (adult). MEP latencies in PN week 1 rats averaged 23.7 ms and became shorter during early maturation, stabilizing at 6.6 ms at PN week 4. During maturation, the conduction velocity (CV) increased from 2.8 ± 0.2 at PN week 1 to 35.2 ± 3.1 mm/ms at PN week 8. Histology of the spinal cord and sciatic nerves revealed progressive axonal myelination. Expression of the oligodendrocyte precursor markers PDGFRα and NG2 were downregulated in spinal cords, and myelin-relevant proteins such as GalC, CNP, and MBP increased during maturation. Oligodendrocyte-lineage markers Olig2 and MOG, expressed in myelinated oligodendrocytes, peaked at PN week 3 and were downregulated thereafter. A similar expression pattern was observed in neurofilament M/H subunits that were extensively phosphorylated in adult spinal cords but not in neonatal spinal cords, suggesting an increase in axon diameter and myelin formation. Ultrastructural morphology in the ventrolateral funiculus (VLF) showed axon myelination of the VLF axons (99.3%) at PN week 2, while 44.6% were sheathed at PN week 1. Increased axon diameter and myelin thickness in the VLF and sciatic nerves were highly correlated to the CV (rs > 0.95). This suggests that MEPs could be a predicator of morphological maturity of myelinated axons in descending motor tracts.
机译:这项研究调查了幼崽的下降运动道的髓鞘相关蛋白的电生理和组织学变化以及变化。运动诱发电位(MEP)代表在刺激运动皮层后对下肢引起的反应的下降传导反应。从产后(PN)第1周到第9周(成人)每两周记录一次MEP响应。 PN第1周大鼠的MEP潜伏期平均为23.7 ms,在早期成熟期变短,在PN第4周稳定在6.6 ms。在成熟期间,传导速度(CV)从PN第1周的2.8±0.2增加到35.2±3.1 mm / PN在第8周。ms。脊髓和坐骨神经的组织学检查显示进行性轴突髓鞘形成。少突胶质细胞前体标志物PDGFRα和NG2在脊髓中的表达下调,并且在成熟过程中与髓磷脂相关的蛋白(如GalC,CNP和MBP)增加。在髓鞘化少突胶质细胞中表达的少突胶质细胞谱系标记物Olig2和MOG在PN第3周达到峰值,此后下调。在成年脊髓中广泛磷酸化的神经丝M / H亚基中观察到了类似的表达模式,而在新生儿脊髓中则没有,这表明轴突直径和髓鞘形成增加。腹外侧功能区(VLF)的超微结构形态显示在PN第2周时VLF轴突的轴突髓鞘化(99.3%),而在PN第1周时鞘膜轴突髓鞘化(44.6%)。简历(rs> 0.95)。这表明,MEPs可能是下降的运动系统中髓鞘轴突形态成熟度的预测因子。

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