脂肪组织
医学
骨骼肌
旁分泌信号
肌动蛋白
脂肪生成
脂联素
脂肪因子
再生(生物学)
内分泌学
内科学
纤维化
背景(考古学)
祖细胞
干细胞
移植
基质血管部分
再生医学
白色脂肪组织
细胞生物学
组织工程
调节器
生物信息学
炎症
肌萎缩
心肌细胞
神经科学
作者
Chongxuan Lu,Feng Lu,Junrong Cai
摘要
Skeletal muscle accounts for approximately 40% of total body mass and is essential for locomotion, metabolic regulation and systemic homeostasis. Adipose tissue is increasingly recognized as an active component of the muscle's regenerative microenvironment. During muscle repair, adipose tissue contributes to local metabolic support and paracrine signalling, but its effects are highly context dependent. Tightly regulated presence of adipose tissue accompanies effective regeneration, whereas excessive or dysregulated ectopic fat accumulation leads to persistent functional impairment. This review synthesizes recent experimental and translational studies investigating the cellular origins, regulatory mechanisms and functional consequences of adipose tissue during skeletal muscle repair. We propose three potential therapeutic directions to improve pathological muscle repair by modulation of the adipose-related intramuscular regenerative microenvironment: (1) targeted modulation of fibro-adipogenic progenitors (FAPs) to curb pathological adipogenesis and fibrosis while leveraging beneficial mediators such as adiponectin and leptin; (2) adipose-derived stem cell transplantation and exosome-based approaches to deliver multipotent cells and remodel the repair microenvironment; and (3) induction of adipose browning to enhance energy availability, immune tone and vascularization while recognizing its context-dependent liabilities. Together, these strategies position adipose tissue as a plastic and environment-sensitive regulator of muscle regeneration and provide a framework for precision interventions to improve structural and functional outcomes.
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