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Targeting Age-Dependent Functional and Metabolic Decline of Human Skeletal Muscle: The Geroprotective Role of Exercise Myokine IL-6 and Vitamin D

机译:针对人类骨骼肌的年龄依赖性功能和代谢性衰退:运动Myokine IL-6和维生素D的保护作用

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摘要

In the elderly, whole-body health largely relies on healthy skeletal muscle, which controls body stability, locomotion, and metabolic homeostasis. Age-related skeletal muscle structural/functional deterioration is associated with a higher risk of severe comorbid conditions and poorer outcomes, demanding major socioeconomic costs. Thus, the need for efficient so-called geroprotective strategies to improve resilience and ensure a good quality of life in older subjects is urgent. Skeletal muscle senescence and metabolic dysregulation share common cellular/intracellular mechanisms, potentially representing targets for intervention to preserve muscle integrity. Many factors converge in aging, and multifaceted approaches have been proposed as interventions, although they have often been inconclusive. Physical exercise can counteract aging and metabolic deficits, not only in maintaining tissue mass, but also by preserving tissue secretory function. Indeed, skeletal muscle is currently considered a proper secretory organ controlling distant organ functions through immunoactive regulatory small peptides called myokines. This review provides a current perspective on the main biomolecular mechanisms underlying age-dependent and metabolic deterioration of skeletal muscle, herein discussed as a secretory organ, the functional integrity of which largely depends on exercise and myokine release. In particular, muscle-derived interleukin (IL)-6 is discussed as a nutrient-level biosensor. Overall, exercise and vitamin D are addressed as optimal geroprotective strategies in view of their multi-target effects.
机译:在老年人中,全身健康在很大程度上取决于健康的骨骼肌,骨骼肌控制着身体的稳定性,运动能力和代谢稳态。与年龄有关的骨骼肌结构/功能恶化与严重的合并症和较高的结局风险相关,需要大量的社会经济成本。因此,迫切需要有效的所谓的防老化策略以提高弹性并确保老年受试者的良好生活质量。骨骼肌衰老和代谢失调共有共同的细胞/细胞内机制,可能代表了维护肌肉完整性的干预目标。许多因素在衰老中趋于一致,尽管干预措施往往尚无定论,但已提出多方面的方法作为干预措施。体育锻炼不仅可以维持组织质量,而且可以保持组织分泌功能,从而抵消衰老和代谢缺陷。确实,骨骼肌目前被认为是通过称为肌动蛋白的免疫活性调节小肽来控制远处器官功能的适当分泌器官。这篇综述提供了关于骨骼肌的年龄依赖性和代谢退化背后的主要生物分子机制的最新观点,本文将其作为分泌器官进行讨论,其功能完整性在很大程度上取决于运动和肌动蛋白的释放。特别地,讨论了源自肌肉的白介素(IL)-6作为营养水平的生物传感器。总体而言,鉴于运动和维生素D的多目标作用,它们被认为是最佳的抗保护策略。

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