Sakita Masahiro, Murakami Shinichiro, Fujino Hidemi
Department of Physical Therapy, Faculty of Health Sciences, Kyoto Tachibana University, 34 Oyakeyamada, Yamashina Ward, Kyoto City, Kyoto, 607-8175, Japan.
Department of Physical Therapy, Faculty of Health Care Sciences, Himeji-Dokkyo University, 7-2-1 Kamiono, Himeji City, Hyogo, 670-0896, Japan.
BMC Neurosci. 2016 Jun 24;17(1):39. doi: 10.1186/s12868-016-0277-4.
Regression of myelinated peripheral nerve fibers in the lower extremities contributes to sarcopenia and balance dysfunction in normal aging. This subclinical regression of myelinated fibers (MFs) is heavily influenced by alterations in microvasculature, though the mechanism underlying these age-related degenerative phenomena remains unclear. The aim of the present study was to examine age-related regressions in myelinated distal peripheral nerve fibers as well as capillary architecture in rats using both morphological and histochemical methods.
MFs were categorized into tertiles of 'large', 'medium', and 'small' sizes based on the distribution of MF diameters. A two-way ANOVA was used to assess effects of fiber size (large/medium/small) and group (young/elderly) on myelin thickness, axon diameter, myelin perimeter, axon perimeter, and G-ratio (axon diameter/fiber diameter). Significant main effects were observed for both MF size and group with respect to all dimensions except for G-ratio. Values for fiber diameter (P < 0.01), myelin thickness (P < 0.01), axon diameter (P < 0.01), myelin perimeter (P < 0.01), and axon perimeter (P < 0.01) were significantly lower than those in the young group. Additionally, mean capillary diameter and number of microvascular branch points were significantly lower in the elderly group than in the young group.
The present study demonstrated that spontaneous age-related regression predominantly occurs for all fiber sizes in the distal peripheral nerves and the capillary architecture. The results of the present study further suggest that both the distal MFs and capillaries in the peripheral nerve may simultaneously regress with aging.
下肢有髓鞘外周神经纤维的退化会导致正常衰老过程中的肌肉减少症和平衡功能障碍。有髓鞘纤维(MFs)的这种亚临床退化受到微血管变化的严重影响,尽管这些与年龄相关的退行性现象的潜在机制仍不清楚。本研究的目的是使用形态学和组织化学方法检查大鼠有髓鞘的远端外周神经纤维以及毛细血管结构的年龄相关退化情况。
根据MF直径的分布,将MF分为“大”、“中”、“小”三个三分位数。采用双向方差分析来评估纤维大小(大/中/小)和组(年轻/老年)对髓鞘厚度、轴突直径、髓鞘周长、轴突周长和G比值(轴突直径/纤维直径)的影响。除G比值外,在所有维度上均观察到MF大小和组的显著主效应。纤维直径(P < 0.01)、髓鞘厚度(P < 0.01)、轴突直径(P < 0.01)、髓鞘周长(P < 0.01)和轴突周长(P < 0.01)的值均显著低于年轻组。此外,老年组的平均毛细血管直径和微血管分支点数显著低于年轻组。
本研究表明,与年龄相关的自发退化主要发生在远端外周神经的所有纤维大小以及毛细血管结构中。本研究结果进一步表明,外周神经中的远端MF和毛细血管可能会随着衰老同时退化。