串扰
微泡
生物
脂肪组织
细胞生物学
小RNA
人口
细胞信号
信号转导
神经科学
生物信息学
线粒体
代谢途径
功能(生物学)
骨骼肌
细胞内
外体
细胞外小泡
平衡
脂质代谢
胞外囊泡
代谢组学
计算生物学
细胞外
微泡
适应(眼睛)
疾病
作者
Mengran Qin,Zhichao Huang,Yan Wang,Jian Ma
标识
DOI:10.1080/10408398.2026.2646268
摘要
Inter-organ communication among bone, skeletal muscle, and adipose tissue is essential for maintaining metabolic homeostasis and musculoskeletal integrity. Dysregulation of this crosstalk is closely associated with aging-related and metabolic diseases, including osteoporosis, sarcopenia, and obesity. With population aging and the rising prevalence of metabolic disorders, elucidating the mechanisms underlying bone-muscle-adipose interactions has become a critical focus in biomedical research. Emerging evidence highlights exercise-derived exosomes as key mediators of intercellular communication. These extracellular vesicles transport specific microRNAs and bioactive molecules that modulate signaling pathways across bone, skeletal muscle, and adipose tissue, thereby coordinating systemic metabolism and tissue remodeling. Exercise has been shown to regulate the biogenesis, release, and molecular cargo of exosomes, enhancing the synergistic function of these tissues and alleviating age-associated metabolic dysfunction and degeneration. Notably, exercise-induced exosomal miRNAs exhibit therapeutic potential by targeting pathways involved in inflammation, mitochondrial function, and anabolic-catabolic balance. This review summarizes current advances in the role of exercise-derived exosomes in bone-muscle-adipose crosstalk during aging and metabolic diseases, discusses their potential as novel therapeutic targets or biomarkers, and outlines key challenges and future research directions. These insights aim to provide a theoretical basis and practical guidance for the development of exercise-based interventions and aging-related disease therapies.
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