Muscle fatigue and exercise-related biomarkers in amyotrophic lateral sclerosis

F. Bianchi, L. Becattini, L. Chico, G. Ricci, G. Siciliano
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Abstract

Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disorder affecting motor neurons. The complex etiopathogenetic mechanism of ALS can lead to extensive alterations, including cortical changes, neuroinflammation, and changes in muscular structure. These ALS-derived alterations may contribute to fatigue, a symptom severely impacting patients’ quality of life that is commonly associated with muscular exercise. Intriguingly, muscular exercise can be at once a promoter of motor neuron degeneration in predisposed patients as well as an effective non-pharmacological treatment of ALS. To fully disclose its therapeutic potential, muscular exercise must be tailored to patients’ phenotypes, balancing potential benefits and risks that are unique to each ALS case. Biomarkers of muscular fatigue, with their potential for insight into inflammation and oxidation, can be used to ensure that the intensity of physical activity remains below the threshold level beyond which exercise might become harmful. In this review, the authors explore the concept of fatigue in ALS patients, focusing on fatigue generation, definition, detection, quantification, and treatment. The study discusses the most important fatigue biomarkers, putting them in relation to the mechanism of fatigue generation and with monitoring of muscular exercise as a possible treatment of fatigue.
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肌萎缩性侧索硬化症中肌肉疲劳和运动相关的生物标志物
肌萎缩性侧索硬化症(ALS)是一种影响运动神经元的破坏性神经退行性疾病。ALS复杂的发病机制可导致广泛的改变,包括皮质改变、神经炎症和肌肉结构的改变。这些als引起的改变可能导致疲劳,这是一种严重影响患者生活质量的症状,通常与肌肉运动有关。有趣的是,肌肉锻炼既可以促进易感患者的运动神经元退化,也可以有效地非药物治疗ALS。为了充分揭示其治疗潜力,肌肉锻炼必须根据患者的表型进行定制,平衡每个ALS病例特有的潜在益处和风险。肌肉疲劳的生物标志物具有洞察炎症和氧化的潜力,可以用来确保身体活动的强度保持在可能有害的阈值水平以下。在这篇综述中,作者探讨了ALS患者疲劳的概念,重点是疲劳的产生、定义、检测、量化和治疗。该研究讨论了最重要的疲劳生物标志物,将它们与疲劳产生的机制联系起来,并与监测肌肉运动作为疲劳的可能治疗方法联系起来。
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