生物
肌肉萎缩
萎缩
骨骼肌
后肢
耐力训练
乳酸脱氢酶
氧化磷酸化
腓肠肌
肌萎缩
内分泌学
肌肉疲劳
内科学
浪费的
氧化应激
新陈代谢
生物化学
线粒体
肌肉收缩
心肌细胞
乳酸
分解代谢
比目鱼肌
氨基酸
柠檬酸合酶
肌原纤维
下调和上调
作者
Zhen Qi,Xi Liu,Yi‐Fen Chen,Linglin Zhang,Longhe Yang,Caihua Huang,Donghai Lin
标识
DOI:10.1080/10985549.2025.2551616
摘要
Lactate, historically considered a metabolic byproduct, has emerged as a key regulator of muscle physiology and metabolism. This study explores its potential as an exercise mimetic to counteract disuse muscle atrophy (DMA) in aging skeletal muscle using a hindlimb suspension model in senescence-accelerated prone 8 (SAMP8) mice. The mice were divided into four groups: Control, lactate-treated control, hindlimb suspension, and hindlimb suspension with lactate intervention. Lactate administration preserved gastrocnemius muscle mass, restored muscle strength, and attenuated oxidative fiber atrophy. Electrophoretic and histological analyses showed increased MyHC I expression, indicating protection of oxidative fibers. Functional assessments revealed improved muscle endurance and contractile force, while metabolomic profiling identified changes in energy metabolism, amino acid metabolism, and protein synthesis pathways. Specifically, lactate improved impaired branched-chain amino acid metabolism, suggesting enhanced protein synthesis. In addition, lactate boosted Cori cycle activity, upregulated hepatic lactate transporters, and increased lactate dehydrogenase B activity, facilitating efficient lactate metabolism and gluconeogenesis. These results provide new insights into the role of lactate as a metabolic regulator and highlight its potential as a therapeutic intervention to combat exercise-induced muscle wasting and preserve muscle function in aging and immobilized individuals.
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