首页> 外文期刊>Neural regeneration research >Melatonin combined with chondroitin sulfate ABC promotes nerve regeneration after root-avulsion brachial plexus injury
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Melatonin combined with chondroitin sulfate ABC promotes nerve regeneration after root-avulsion brachial plexus injury

机译:褪黑激素联合软骨素硫酸软骨素ABC促进了根部撕裂的臂丛丛损伤后神经再生

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After nerve-root avulsion injury of the brachial plexus, oxidative damage, inflammatory reaction, and glial scar formation can affect nerve regeneration and functional recovery. Melatonin (MT) has been shown to have good anti-inflammatory, antioxidant, and neuroprotective effects. Chondroitin sulfate ABC (ChABC) has been shown to metabolize chondroitin sulfate proteoglycans and can reduce colloidal scar formation. However, the effect of any of these drugs alone in the recovery of nerve function after injury is not completely satisfactory. Therefore, this experiment aimed to explore the effect and mechanism of combined application of melatonin and chondroitin sulfate ABC on nerve regeneration and functional recovery after nerve-root avulsion of the brachial plexus. Fifty-two Sprague-Dawley rats were selected and their C5–7 nerve roots were avulsed. Then, the C6 nerve roots were replanted to construct the brachial plexus nerve-root avulsion model. After successful modeling, the injured rats were randomly divided into four groups. The first group (injury) did not receive any drug treatment, but was treated with a pure gel-sponge carrier nerve-root implantation and an ethanol-saline solution via intraperitoneal (i.p.) injection. The second group (melatonin) was treated with melatonin via i.p. injection. The third group (chondroitin sulfate ABC) was treated with chondroitin sulfate ABC through local administration. The fourth group (melatonin + chondroitin sulfate ABC) was treated with melatonin through i.p. injection and chondroitin sulfate ABC through local administration. The upper limb Terzis grooming test was used 2–6 weeks after injury to evaluate motor function. Inflammation and oxidative damage within 24 hours of injury were evaluated by spectrophotometry. Immunofluorescence and neuroelectrophysiology were used to evaluate glial scar, neuronal protection, and nerve regeneration. The results showed that the Terzis grooming-test scores of the three groups that received treatment were better than those of the injury only group. Additionally, these three groups showed lower levels of C5–7 intramedullary peroxidase and malondialdehyde. Further, glial scar tissue in the C6 spinal segment was smaller and the number of motor neurons was greater. The endplate area of the biceps muscle was larger and the structure was clear. The latency of the compound potential of the myocutaneous nerve-biceps muscle was shorter. All these indexes were even greater in the melatonin + chondroitin sulfate ABC group than in the melatonin only or chondroitin sulfate ABC only groups. Thus, the results showed that melatonin combined with chondroitin sulfate ABC can promote nerve regeneration after nerve-root avulsion injury of the brachial plexus, which may be achieved by reducing oxidative damage and inflammatory reaction in the injury area and inhibiting glial scar formation.
机译:在臂丛神经的神经根撕裂损伤后,氧化损伤,炎症反应和胶质瘢痕形成会影响神经再生和功能性回收。已显示褪黑激素(MT)具有良好的抗炎,抗氧化剂和神经保护作用。硫酸软骨素ABC(CHABC)已被证明可以代谢硫酸软骨素蛋白多糖,可以减少胶体瘢痕形成。然而,任何这些药物在损伤后单独恢复神经功能的效果并不完全令人满意。因此,该实验旨在探讨褪黑素和软骨素ABC硫酸软骨素ABC在臂丛神经的神经根撕裂后神经再生和功能恢复的效果和机制。选择了五十二条Sprague-Dawley大鼠,并孕育了它们的C5-7神经根。然后,将C6神经根被重新塑造以构建臂丛神经根撕开模型。成功建模后,受伤的大鼠随机分为四组。第一组(损伤)未接受任何药物处理,但通过腹膜内(I.P.)注射用纯凝胶海绵载体神经根注入和乙醇 - 盐溶液处理。第二组(褪黑激素)通过I.P用​​褪黑素处理。注射。第三组(硫酸软骨素ABC)用氨基氨基磺酸盐ABC处理。第四组(褪黑素+软骨素ABC)用褪黑素通过I.P处理。通过局部给药注射和软骨素ABC。损伤后2-6周使用上肢褐色纹装梳理试验,以评估电机功能。通过分光光度法评估损伤后24小时内的炎症和氧化损伤。免疫荧光和神经电生理学用于评估胶质瘢痕,神经元保护和神经再生。结果表明,接受治疗的三组的Terzis梳理 - 测试评分优于损伤的群体。另外,这三组显示较低水平的C5-7髓内过氧化物酶和丙二醛。此外,C6脊段段中的胶质瘢痕组织较小,电动机神经元的数量更大。二头肌肌肉的端板面积较大,结构清晰。肌外神经 - 二头肌肌肉复合电位的潜水较短。在褪黑激素+软骨素ABC组中,所有这些指标甚至更大,而不是在褪黑激素中或硫酸软骨素ABC仅组。因此,结果表明,褪黑素与硫酸软骨素ABC联合硫酸软骨素ABC可以在臂丛神经的神经根撕裂损伤后促进神经再生,这可以通过降低损伤面积中的氧化损伤和炎症反应来实现并抑制胶质瘢痕形成。

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