Effect of immediate electrical stimulation in the distal segment of the nerve with Wallerian degeneration in rats with sciatic nerve injury

IF 0.5 Q3 MEDICINE, GENERAL & INTERNAL Medical Journal of Indonesia Pub Date : 2022-03-08 DOI:10.13181/mji.oa.225870
A. R. Hamid, S. Maliawan, D. Samatra, N. Astawa, I. Bakta, I. M. Jawi, Ida Bagus Putera Manuaba, I. D. M. Sukrama, D. S. Perdanakusuma
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Abstract

BACKGROUND Electrical stimulation in the proximal segment is one of the modalities for peripheral nerve injury, although it is prone to cause excessive axonal sprouting growth in the proximal segment of the nerve. This study aimed to show that immediate electrical stimulation in the distal segment of the sciatic nerve in Wistar rats accelerated Wallerian degeneration by increasing the expression of tumor necrosis factor-alpha (TNF-α), interleukin (IL)-10, and galectin-3/MAC-2 macrophages to avoid sprouting axons excessively in the proximal segment. METHODS This was an experimental study using male Wistar rats (Rattus norvegicus) with a randomized post-test only control group design. The treatment group received immediate electrical stimulation (20 Hz, 2 mA, for 5 sec) to the distal nerve after sciatic nerve injury, while the control group received no treatment. After 3 days, tissue samples were extracted from the distal segment of the sciatic nerve to examine the level of TNF-α, IL-10, and galectin 3/Mac-2 macrophages using ELISA and from proximal nerves to histologically examine the sprouting axons. RESULTS Rats in the treatment group had higher TNF-α (52.1 [10.32] versus 40.4 [17.71] pg/100 mg, p = 0.031) and higher IL-10 (918 [167.6] versus 759 [158.9] pg/ml, p = 0.010). Expression of galectin 3/Mac-2 macrophages was similar in both groups (465 [49.5] versus 444 [54.4] pg/100 mg, p = 0.247). The number of sprouting axons was lower in the treatment group (2 [IQR 1–2] versus 2.5 [IQR 2–3], p = 0.003). CONCLUSIONS Immediate electrical stimulation in the distal segment of the sciatic nerve can accelerate nerve regeneration.
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即刻电刺激对坐骨神经损伤大鼠Wallerian变性神经远端的影响
背景近端电刺激是外周神经损伤的一种方式,尽管它容易导致神经近端过度轴突发芽生长。本研究旨在表明,对Wistar大鼠坐骨神经远端段的即时电刺激通过增加肿瘤坏死因子-α(TNF-α)、白细胞介素(IL)-10和半乳糖凝集素-3/MAC-2巨噬细胞的表达来加速Wallerian变性,以避免轴突在近端过度发芽。方法采用雄性Wistar大鼠(褐家鼠)进行实验研究,采用随机试验后对照组设计。治疗组在坐骨神经损伤后立即对远端神经进行电刺激(20 Hz,2 mA,持续5秒),而对照组不接受治疗。3天后,从坐骨神经远端提取组织样本,使用ELISA检测TNF-α、IL-10和半乳糖凝集素3/Mac-2巨噬细胞的水平,并从近端神经提取组织样本对发芽的轴突进行组织学检查。结果治疗组大鼠具有较高的TNF-α(52.1[10.32]对40.4[17.71]pg/100 mg,p=0.031)和较高的IL-10(918[167.6]对759[158.9]pg/ml,p=0.010)。两组大鼠半乳糖凝集素3/Mac-2巨噬细胞的表达相似(465[49.5]对444[54.4]pg/100mg,p=0.027)。治疗组发芽轴突的数量较低(2[IQR 1-2]对2.5[IQR2–3],p=0.003)。结论坐骨神经远端立即电刺激可加速神经再生。
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来源期刊
Medical Journal of Indonesia
Medical Journal of Indonesia MEDICINE, GENERAL & INTERNAL-
CiteScore
1.00
自引率
20.00%
发文量
25
审稿时长
24 weeks
期刊介绍: Medical Journal of Indonesia is a peer-reviewed and open access journal that focuses on promoting medical sciences generated from basic sciences, clinical, and community or public health research to integrate researches in all aspects of human health. This journal publishes original articles, reviews, and also interesting case reports. Brief communications containing short features of medicine, latest developments in diagnostic procedures, treatment, or other health issues that is important for the development of health care system are also acceptable. Letters and commentaries of our published articles are welcome.
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