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持续禁食的脂肪生成会使非酒精性脂肪肝患者的酮生成受损与柠檬酸合成相关联。

Persistent fasting lipogenesis links impaired ketogenesis with citrate synthesis in humans with nonalcoholic fatty liver.

机构信息

Center for Human Nutrition.

Department of Clinical Nutrition.

出版信息

J Clin Invest. 2023 May 1;133(9):e167442. doi: 10.1172/JCI167442.

Abstract

BACKGROUNDHepatic de novo lipogenesis (DNL) and β-oxidation are tightly coordinated, and their dysregulation is thought to contribute to the pathogenesis of nonalcoholic fatty liver (NAFL). Fasting normally relaxes DNL-mediated inhibition of hepatic β-oxidation, dramatically increasing ketogenesis and decreasing reliance on the TCA cycle. Thus, we tested whether aberrant oxidative metabolism in fasting NAFL subjects is related to the inability to halt fasting DNL.METHODSForty consecutive nondiabetic individuals with and without a history of NAFL were recruited for this observational study. After phenotyping, subjects fasted for 24 hours, and hepatic metabolism was interrogated using a combination of 2H2O and 13C tracers, magnetic resonance spectroscopy, and high-resolution mass spectrometry.RESULTSWithin a subset of subjects, DNL was detectable after a 24-hour fast and was more prominent in those with NAFL, though it was poorly correlated with steatosis. However, fasting DNL negatively correlated with hepatic β-oxidation and ketogenesis and positively correlated with citrate synthesis. Subjects with NAFL but undetectable fasting DNL (25th percentile) were comparatively normal. However, those with the highest fasting DNL (75th percentile) were intransigent to the effects of fasting on the concentration of insulin, non-esterified fatty acid, and ketones. Additionally, they sustained glycogenolysis and were spared the loss of oxaloacetate to gluconeogenesis in favor of citrate synthesis, which correlated with DNL and diminished ketogenesis.CONCLUSIONMetabolic flux analysis in fasted subjects indicates that shared metabolic mechanisms link the dysregulations of hepatic DNL, ketogenesis, and the TCA cycle in NAFL.TRIAL REGISTRATIONData were obtained during the enrollment/non-intervention phase of Effect of Vitamin E on Non-Alcoholic Fatty Liver Disease, ClinicalTrials.gov NCT02690792.FUNDINGThis work was supported by the University of Texas Southwestern NORC Quantitative Metabolism Core (NIH P30DK127984), the NIH/National Institute of Diabetes and Digestive and Kidney Diseases (R01DK078184, R01DK128168, R01DK087977, R01DK132254, and K01DK133630), the NIH/National Institute on Alcohol Abuse and Alcoholism (K01AA030327), and the Robert A. Welch Foundation (I-1804).

摘要

背景

肝从头合成(DNL)和β-氧化紧密协调,其失调被认为导致非酒精性脂肪肝(NAFL)的发病机制。禁食通常会放松 DNL 介导的对肝β-氧化的抑制,从而显著增加酮体生成并减少对 TCA 循环的依赖。因此,我们测试了禁食期间 NAFL 患者异常氧化代谢是否与无法停止禁食 DNL 有关。

方法

本观察性研究纳入了 40 名连续的非糖尿病个体,其中有或无 NAFL 病史。在表型分析后,受试者禁食 24 小时,使用 2H2O 和 13C 示踪剂、磁共振波谱和高分辨率质谱联用对肝代谢进行检测。

结果

在一部分受试者中,24 小时禁食后可检测到 DNL,且在有 NAFL 的受试者中更为明显,尽管其与脂肪变性相关性较差。然而,禁食 DNL 与肝β-氧化和酮体生成呈负相关,与柠檬酸合成呈正相关。NAFL 但禁食 DNL 不可检测(第 25 百分位数)的受试者相对正常。然而,禁食 DNL 最高(第 75 百分位数)的受试者对禁食对胰岛素、非酯化脂肪酸和酮体浓度的影响无反应。此外,他们持续进行糖异生,免于 oxaloacetate 向糖异生的损失,有利于柠檬酸合成,这与 DNL 和酮体生成减少相关。

结论

在禁食受试者中的代谢通量分析表明,肝 DNL、酮体生成和 TCA 循环的失调在 NAFL 中存在共同的代谢机制。

试验注册

数据是在维生素 E 对非酒精性脂肪肝的影响研究的入组/非干预阶段获得的,ClinicalTrials.gov 注册号为 NCT02690792。

基金

本工作得到德克萨斯大学西南医学中心 NORC 定量代谢核心(NIH P30DK127984)、美国国立卫生研究院国家糖尿病、消化和肾脏疾病研究所(R01DK078184、R01DK128168、R01DK087977、R01DK132254 和 K01DK133630)、美国国立卫生研究院国家酒精滥用和酒精中毒研究所(K01AA030327)和罗伯特·A·韦尔奇基金会(I-1804)的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d1e/10145942/bd72ac43b252/jci-133-167442-g022.jpg

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