薯蓣皂甙元
肌萎缩
肌发生
生物
细胞生物学
信号转导
C2C12型
细胞生长
肌源性调节因子
内科学
细胞
内分泌学
骨骼肌
心肌细胞
下调和上调
肌球蛋白
锡尔图因
肌动蛋白
MyoD公司
细胞信号
细胞分化
蛋白激酶B
卫星
自分泌信号
受体
西妥因1
生长因子
腓肠肌
PI3K/AKT/mTOR通路
作者
Xin Zeng,Han Ding,Ziye Li,Qian Wang,Peiyao Guan,Tingting Wang,Jiayun Wang,Yansong Fu,Lizhang Chen,Hong Qin
出处
期刊:Aging Cell
[Wiley]
日期:2026-07-30
卷期号:25 (8): e70651-e70651
摘要
Age-related sarcopenia is characterized by a progressive decline in skeletal muscle mass and function, with satellite cell dysfunction representing a central pathogenic mechanism. Diosgenin, a steroidal saponin derived from plants of the Dioscorea genus, has demonstrated potential anti-aging properties; however, its role in sarcopenia remains unclear. In this study, naturally aged C57BL/6J mice and a D-galactose (D-gal)-induced senescent C2C12 cell model were employed to systematically investigate the effects of diosgenin on muscle function, satellite cell dynamics, and the sirtuin 1 (SIRT1)/peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1α) signaling pathway. Diosgenin treatment significantly improved forelimb grip strength and exercise endurance, increased the gastrocnemius muscle index, and enlarged muscle fiber cross-sectional area in aged mice. Mechanistically, diosgenin upregulated the expression of myokines meteorin-like protein (METRNL) and insulin-like growth factor 1 (IGF-1) at both mRNA and protein levels, increased the number of proliferative satellite cells positive for paired box 7 (Pax7) and Ki67, and enhanced the expression of myogenic markers, including myogenic factor 5 (Myf5), Pax7, and myosin heavy chain II (MyHC II). These effects were mediated by direct activation of SIRT1, leading to deacetylation of PGC-1α. Notably, pharmacological inhibition of SIRT1 with EX527 markedly abrogated the diosgenin-induced effects. Molecular docking and cellular thermal shift assays further confirmed the direct interaction between diosgenin and SIRT1. Collectively, these findings demonstrate that diosgenin alleviates age-related sarcopenia by activating the SIRT1/PGC-1α signaling pathway to promote satellite cell proliferation and myogenic differentiation, highlighting its potential as a promising therapeutic candidate for sarcopenia.
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