Kirk Ben, Lombardi Giovanni, Duque Gustavo
Department of Medicine, Western Health, Melbourne Medical School, University of Melbourne, Melbourne, Victoria, Australia.
Australian Institute for Musculoskeletal Science (AIMSS), University of Melbourne and Western Health, Melbourne, Victoria, Australia.
Nat Rev Endocrinol. 2025 Jun;21(6):375-390. doi: 10.1038/s41574-025-01088-x. Epub 2025 Feb 26.
Interorgan communication between bone and skeletal muscle is central to human health. A dysregulation of bone-muscle crosstalk is implicated in several age-related diseases. Ageing-associated changes in endocrine, inflammatory, nutritional and biomechanical stimuli can influence the differentiation capacity, function and survival of mesenchymal stem cells and bone-forming and muscle-forming cells. Consequently, the secretome phenotype of bone and muscle cells is altered, leading to impaired crosstalk and, ultimately, catabolism of both tissues. Adipose tissue acts as a third player in the bone-muscle interaction by secreting factors that affect bone and muscle cells. Physical exercise remains the key biological stimulus for bone-muscle crosstalk, either directly via the release of cytokines from bone, muscle or adipocytes, or indirectly through extracellular vesicles. Overall, bone-muscle crosstalk is considered an inherent process necessary to maintain the structure and function of both tissues across the life cycle. This Review summarizes the latest biomedical advances in bone-muscle crosstalk as it pertains to human ageing and disease. We also outline future research priorities to accommodate the understanding of this rapidly emerging field.
骨骼与骨骼肌之间的器官间通讯对人类健康至关重要。骨-肌相互作用失调与多种年龄相关疾病有关。与衰老相关的内分泌、炎症、营养和生物力学刺激的变化会影响间充质干细胞以及成骨细胞和成肌细胞的分化能力、功能和存活。因此,骨细胞和肌肉细胞的分泌组表型会发生改变,导致相互作用受损,并最终导致两种组织的分解代谢。脂肪组织通过分泌影响骨细胞和肌肉细胞的因子,在骨-肌相互作用中扮演第三方角色。体育锻炼仍然是骨-肌相互作用的关键生物刺激因素,其作用方式要么是直接通过骨、肌肉或脂肪细胞释放细胞因子,要么是间接通过细胞外囊泡。总体而言,骨-肌相互作用被认为是维持整个生命周期中两种组织的结构和功能所必需的固有过程。本综述总结了与人类衰老和疾病相关的骨-肌相互作用的最新生物医学进展。我们还概述了未来的研究重点,以增进对这一迅速发展领域的理解。