Human MASLD is a diurnal disease driven by multisystem insulin resistance and reduced insulin availability at night

内科学 脂肪生成 内分泌学 胰岛素抵抗 NEFA公司 胰岛素 碳水化合物代谢 脂质代谢 生物 昼夜节律 葡萄糖摄取 医学 脂肪变性 代谢组 新陈代谢 脂肪肝 代谢综合征 气温日变化 超重 非酒精性脂肪肝 肝病 胰腺激素 2型糖尿病 骨骼肌 血脂谱 肥胖 糖尿病 代谢紊乱 脂滴 糖耐量试验
作者
Thomas Marjot,Kieran Smith,Felix Westcott,Sarah White,Elspeth Johnson,Nikola Srnic,Amy Barrett,Ellis Hall,Kate Gralton,Kaitlyn Dennis,Hamish Miller,Riccardo Pofi,Jeremy FL Cobbold,Rebecca Richmond,Fredrik Karpe,Ronnie Blazev,Matthew J. Watt,Benjamin L. Parker,Leanne Hodson,David W. Ray
出处
期刊:Cell Metabolism [Cell Press]
卷期号:38 (3): 474-492.e6 被引量:8
标识
DOI:10.1016/j.cmet.2025.12.004
摘要

Hepatic lipid and glucose metabolism have been shown to be under tight circadian control in pre-clinical models. However, it remains unknown whether diurnal patterns exist in functional processes governing intrahepatic lipid accumulation in humans. We performed metabolic phenotyping, including state-of-the-art stable isotope techniques, during day and night in patients with metabolic dysfunction-associated steatotic liver disease (MASLD) and overweight controls (NCT05962099). The primary outcome was diurnal change in hepatic de novo lipogenesis (DNL), alongside a number of secondary outcomes, including changes in hepatic glucose production, glucose disposal, plasma non-esterified fatty acids (NEFAs), and whole-body glucose and lipid oxidation. We show that nighttime metabolic dysfunction is a hallmark of MASLD with multiple pathogenic pathways upregulated at night, including hepatic and peripheral insulin resistance, DNL, and systemic NEFA exposure. Insulin resistance is compounded by lower plasma insulin levels at night, secondary to reduced insulin secretion and elevated insulin clearance. Diurnal differences persist when performing identical investigations after weight loss with liver fat reductions, suggesting that nighttime metabolic dysfunction may be a primary driver of steatosis. These findings will help establish the optimal window for energy intake, exercise, and medication delivery in patients with MASLD. Integrated proteomics of plasma, adipose, and skeletal muscle tissue across day and night also identified a number of specific molecular targets that may offer therapeutic potential in the treatment of metabolic disease.
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