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褪黑素可促进坐骨神经损伤后的轴突再生、减轻氧化应激并改善功能恢复。

Melatonin leads to axonal regeneration, reduction in oxidative stress, and improved functional recovery following sciatic nerve injury.

作者信息

Kaya Yasemin, Savas Kamil, Sarikcioglu Levent, Yaras Nazmi, Angelov Doychin N

机构信息

Department of Anatomy, Akdeniz University Faculty of Medicine, 07070 Antalya, Turkey.

出版信息

Curr Neurovasc Res. 2015;12(1):53-62. doi: 10.2174/1567202612666150102151900.

Abstract

Despite recent advances in microsurgical techniques and equipments, recovery of function following repair of transected nerves often remains suboptimal. Contrary to traumatic injuries vascular damage that causes peripheral nerve injury has not been well-documented in the literature. In the present study a total of 40 female rats were randomly divided into four groups: Group 1: intact controls (n: 10), Group 2: sham-operated (n: 10), Group 3: vehicle-treated (n: 10), Group 4: melatonin-treated (n: 10). Sciatic nerve damage was created by stripping of the epineurial vessels around the nerve. 50 mg/kg Melatonin was injected intraperitoneally immediately after epineurial stripping in Group 4 in the course of 4 postoperative weeks. We found that melatonin administration after stripping of the epineurial vessels exerted a beneficial effect on axonal regeneration and functional recovery was confirmed by functional (sensory-motor, biochemical, and electrophysiological analyses) and morphological (light microscopic and ultrastructural analyses) data. In the light of these results we concluded that melatonin in a model of sciatic nerve injury leads to axonal regeneration, reducing in oxidative stress, and improved functional recovery.

摘要

尽管近年来显微外科技术和设备取得了进展,但横断神经修复后的功能恢复往往仍不尽人意。与创伤性损伤相反,导致周围神经损伤的血管损伤在文献中尚未得到充分记载。在本研究中,总共40只雌性大鼠被随机分为四组:第1组:完整对照组(n = 10),第2组:假手术组(n = 10),第3组:载体治疗组(n = 10),第4组:褪黑素治疗组(n = 10)。通过剥离神经周围的神经外膜血管造成坐骨神经损伤。在第4组中,在神经外膜剥离后立即腹腔注射50mg/kg褪黑素,持续4周的术后过程。我们发现,在剥离神经外膜血管后给予褪黑素对轴突再生具有有益作用,并且功能(感觉运动、生化和电生理分析)和形态学(光学显微镜和超微结构分析)数据证实了功能恢复。根据这些结果,我们得出结论,在坐骨神经损伤模型中,褪黑素可导致轴突再生,减少氧化应激,并改善功能恢复。

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