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A Moderately High‐Protein Diet During the Critical Development Period Protects Hepatic Functional Integrity and Improves Metabolic Health in Middle‐Aged Offspring via the Gut–Liver Axis

作者:Yuqiao Li, Wenyu Xu, Xiangju Kong, Yuanjie Dong, Meiwen An, Yue Guan, Ruohua Wang, He Huang, Songliu Hu, Liying Cai, Yucun Niu · 发表于:Molecular Nutrition & Food Research · 年份:2025 · DOI:10.1002/mnfr.70169 · 被引用次数:3 · 研究领域:Birth, Development, and Health、Liver Disease Diagnosis and Treatment、Diet and metabolism studies

A high-protein diet (HP) in early life has long-term effects on the metabolism and liver health of offspring. However, few studies focus on the impact of early nutritional status on the more disease-susceptible midlife period. Here, we elucidate a moderately HP during critical development and the underlying mechanisms for liver function and metabolic health in middle-aged offspring. Pregnant Wistar rats are given a 6-week dietary intervention with a control diet and a moderately HP during gestation and lactation. The maternal high-protein diet (mHP) group increases energy expenditure, preventing liver fat accumulation and alleviating systemic inflammation of middle-aged offspring. Additionally, the mHP group reshapes offspring gut microbiota, significantly increasing the abundance of Clostridia_vadinBB60_group, Ruminococcaceae_UBA1819, Flavonifractor, and Butyricicoccaceae_UCG-009. Metabolomics and transcriptomics reveal that mHP maintains energy homeostasis in middle-aged offspring by altering serum amino acid, organic acid, and fatty acid profiles and activating the hepatic AMPK/SREBP-1c pathway to preserve liver integrity via the gut-liver axis. We also demonstrate in the Drosophila model that mHP increases AMPK levels and alleviates lipid accumulation in the gut and fat body of middle-aged flies. These findings provide valuable insights into the pivotal role of prenatal nutrition in offspring's long-term health.