Hepatokines lipocalin 2 and osteopontin drive muscle atrophy in MASH

骨桥蛋白 医学 内科学 内分泌学 脂质运载蛋白 肌肉萎缩 骨骼肌 萎缩 生物 平滑肌 炎症 心肌细胞 化学 细胞外基质
作者
Amy R. Fumo,Simon I. Dreher,Pauline Morigny,H. Ji,Raúl Terrón Expósito,Tuna F. Samanci,Tushar More,Lara Ruoff,Joël J. Tissink,Carmen Paredes Yubero,Ana Jimena Alfaro,Christine von Törne,Stefanie Hauck,Sophie H.A. Nusser,Zoltán Czigány,Kenneth A. Dyar,Stephan Herzig,Mauricio Berriel Diaz,Anja Zeigerer,Karsten Hiller
出处
期刊:Molecular metabolism [Elsevier BV]
卷期号:110: 102391-102391
标识
DOI:10.1016/j.molmet.2026.102391
摘要

A bidirectional relationship exists between metabolic dysfunction-associated steatotic liver disease (MASLD) and its progressive inflammatory form, metabolic dysfunction-associated steatohepatitis (MASH), and sarcopenia, with each worsening the prevalence and prognosis of the other. Hepatokines have recently been shown to affect skeletal muscle metabolism and function, both in the context of MASLD and wasting diseases. We here explored the possibility of targeting hepatokines to counteract MASLD-induced sarcopenia. Integrating mouse and human liver transcriptomics with muscle proteomics from MCD- and GAN-diet induced murine MASH models with sarcopenia, we identified three MASH-induced hepatokines, namely LCN2, LGALS3 and OPN. These hepatokines were elevated in the circulation of mouse MASH models with sarcopenia and in sarcopenic patients with advanced chronic liver disease. C2C12 myotubes treated with liver-secreted proteins as well as recombinant LCN2 and LGALS3 exhibited atrophy. Stable isotope tracing and mitochondrial respiration showed that liver-secreted proteins altered mitochondrial metabolism in C2C12 myotubes, which was recapitulated in primary human myotubes. Human 3D skeletal muscle organoids treated with recombinant proteins exhibited functional impairment. Virus-mediated knockdown of LCN2 in liver of mice with MASH improved muscle function and myotube size, whereas virus-mediated overexpression of LCN2 in the liver aggravated MASH-induced myotube atrophy. Targeting hepatokines may therefore be a feasible future therapeutic strategy against sarcopenia.
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