Muscle preservation in proximal nerve injuries: a current update.

Andrii Lysak, Simon Farnebo, Stefano Geuna, Lars B Dahlin
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Abstract

Optimal recovery of muscle function after proximal nerve injuries remains a complex and challenging problem. After a nerve injury, alterations in the affected muscles lead to atrophy, and later degeneration and replacement by fat-fibrous tissues. At present, several different strategies for the preservation of skeletal muscle have been reported, including various sets of physical exercises, muscle massage, physical methods (e.g. electrical stimulation, magnetic field and laser stimulation, low-intensity pulsed ultrasound), medicines (e.g. nutrients, natural and chemical agents, anti-inflammatory and antioxidants, hormones, enzymes and enzyme inhibitors), regenerative medicine (e.g. growth factors, stem cells and microbiota) and surgical procedures (e.g. supercharge end-to-side neurotization). The present review will focus on methods that aimed to minimize the damage to muscles after denervation based on our present knowledge.

近端神经损伤的肌肉保护:最新进展。
近端神经损伤后肌肉功能的最佳恢复仍然是一个复杂而具有挑战性的问题。神经损伤后,受影响肌肉的改变会导致萎缩,随后退化并被脂肪纤维组织取代。目前,已有多种不同的保存骨骼肌的策略被报道,其中包括各种体育锻炼、肌肉按摩、物理方法(如电刺激、磁场和激光刺激、低强度脉冲超声波)、药物(如营养素、天然和人工合成药物)、生物制剂(如胰岛素、胰岛素酶、胰岛素肽)、生物制剂(如胰岛素、胰岛素肽)、生物制剂(如胰岛素)、生物制剂(如胰岛素)和生物制剂(如胰岛素)。如营养素、天然和化学制剂、抗炎和抗氧化剂、荷尔蒙、酶和酶抑制剂)、再生医学(如生长因子、干细胞和微生物群)和外科手术(如末端到一侧的超级神经化)。本综述将根据我们现有的知识,重点介绍旨在将去神经支配后对肌肉的损伤降至最低的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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