赛马鲁肽
脂质代谢
线粒体
压力过载
脂毒性
心功能曲线
心脏纤维化
医学
化学
内科学
细胞生物学
生物
心力衰竭
内分泌学
胰岛素抵抗
心肌肥大
2型糖尿病
糖尿病
利拉鲁肽
作者
Yulan Ma,Chun‐Yan Kong,Zhen Guo,Mingyu Wang,Pan Wang,Fang‐Yuan Liu,Dan Yang,Yang Zheng,Qizhu Tang
标识
DOI:10.1038/s41467-024-48970-2
摘要
Semaglutide, a glucagon-like peptide-1 receptor agonist, is clinically used as a glucose-lowering and weight loss medication due to its effects on energy metabolism. In heart failure, energy production is impaired due to altered mitochondrial function and increased glycolysis. However, the impact of semaglutide on cardiomyocyte metabolism under pressure overload remains unclear. Here we demonstrate that semaglutide improves cardiac function and reduces hypertrophy and fibrosis in a mouse model of pressure overload-induced heart failure. Semaglutide preserves mitochondrial structure and function under chronic stress. Metabolomics reveals that semaglutide reduces mitochondrial damage, lipid accumulation, and ATP deficiency by promoting pyruvate entry into the tricarboxylic acid cycle and increasing fatty acid oxidation. Transcriptional analysis shows that semaglutide regulates myocardial energy metabolism through the Creb5/NR4a1 axis in the PI3K/AKT pathway, reducing NR4a1 expression and its translocation to mitochondria. NR4a1 knockdown ameliorates mitochondrial dysfunction and abnormal glucose and lipid metabolism in the heart. These findings suggest that semaglutide may be a therapeutic agent for improving cardiac remodeling by modulating energy metabolism.
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