Distraction osteogenesis (DO) is a widely employed method for the treatment of limb discrepancies and deformity correction. This study aimed at observing the histomorphological and ultrastructural changes of peripheral nerves around the distraction area during DO and investigating the self-repair mechanism of peripheral nerves in a rat DO model. Sixty rats underwent right femoral DO surgery and were randomly separated into six groups: Control (latency, no distraction, nâ=â10), Group 0-week (after distraction, nâ=â10), Group 2-week (nâ=â10), Group 4-week (nâ=â10), Group 6-week (nâ=â10), and Group 8-week (nâ=â10) at consolidation phase. The right femur of rats in Group 0-week, Group 2-week, Group 4-week, Group 6-week, and Group 8-week was subjected to continuous osteogenesis distraction at a rate of 0.5âmm/day for 10âdays. Motor nerve conduction velocity (MNCV) of the sciatic nerve, sciatic function index (SFI), histological analyses, and transmission electron microscopy were conducted to evaluate nerve function. The MNCV and SFI of Group 0-week, Group 2-week, Group 4-week, and Group 6-week were significantly lower than the Control (P < 0.05). No statistical differences were found between the Control and Group 8-week in terms of MNCV and SFI (P > 0.05). Injuries to nerve fibres and nodes of Ranvier were observed in the Group 0-week, whereas the nerve fibres returned to the normal arrangement in the Group 8-week and oedema of myelin disappeared, with the continuity of axons and lamellar structure of myelin being restored. Femoral DO in rats with a rate of 0.5âmm/day may cause sciatic neurapraxia, which can be self-repaired after 8âweeks of consolidation. The paraneurium around the sciatic nerve enables it to glide during the distraction phase to reduce the occurrence of injurious changes.
The Effect of Distraction Osteogenesis on Peripheral Nerve Regeneration in Rats: A Preliminary Study In Vivo.
牵引成骨对大鼠周围神经再生的影响:一项体内初步研究
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作者:Liu Kai, Chen Yuanxin, Cai Feiyu, Wang Xin, Fan Chenchen, Ren Peng, Yusufu Aihemaitijiang, Liu Yanshi
| 期刊: | Journal of Tissue Engineering and Regenerative Medicine | 影响因子: | 2.600 |
| 时间: | 2023 | 起止号: | 2023 Jun 14; 2023:8818561 |
| doi: | 10.1155/2023/8818561 | 研究方向: | 神经科学 |
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