Kim Minyeong, Lee Suyeon, Hur Junguk, Shin Dayeon
Department of Food and Nutrition, Inha University, Incheon, Republic of Korea.
Department of Biomedical Sciences, School of Medicine and Health Sciences, University of North Dakota, Grand Forks, ND, USA.
Nutr J. 2025 Aug 19;24(1):128. doi: 10.1186/s12937-025-01189-3.
Despite advances in metabolomics, the complex relationship between metabolites and nutrient intake in metabolic syndrome (MetS) remains poorly understood in the Korean population.
This study aimed to characterize the metabolomic profiles and nutrient intake associated with MetS and to examine their relationships in the Ansan-Ansung cohort of the Korean Genome and Epidemiology Study (KoGES).
Data from 2,306 middle-aged adults (1,109 men and 1,197 women) in the KoGES Ansan-Ansung cohort were analyzed. Plasma metabolites were measured using liquid chromatography-mass spectrometry, identifying 135 metabolites. Nutrient intake was assessed using a validated semi-quantitative food frequency questionnaire covering 23 nutrients. MetS-associated metabolites and nutrients were identified using the Wilcoxon rank-sum test, logistic regression, partial least squares-discriminant analysis, and group least absolute shrinkage and selection operator analysis. Pathway enrichment analysis identified key metabolic pathways, and fixed-effects models were applied to assess metabolite-nutrient relationships based on MetS status.
Eleven metabolites, including hexose (FC = 0.95, P = 7.04 × 10), alanine, and branched-chain amino acids, and three nutrients including fat, retinol, and cholesterol, were significantly associated with MetS (FC range = 0.87-0.93; all P < 0.05). Pathway analysis highlighted disruptions in arginine biosynthesis and arginine-proline metabolism. The MetS group exhibited six unique metabolite-nutrient pairs that were not observed in the non-MetS group, including 'isoleucine-fat,' 'isoleucine-P,' 'proline-fat,' 'leucine-fat,' 'leucine-P,' and 'valerylcarnitine-niacin.' Notably, dysregulated metabolism of branched-chain amino acids, such as isoleucine and leucine, has been implicated in oxidative stress. Importantly, the stochastic gradient descent classifier achieved the best predictive performance among the eight machine learning models (area under the curve, AUC = 0.84), highlighting the robustness of classification based on metabolite data. However, the absence of external validation limits the generalizability of these findings.
This comprehensive metabolomic analysis of the KoGES Ansan-Ansung cohort revealed distinct metabolic profiles and nutrient intake patterns associated with MetS, highlighting altered metabolite-nutrient relationships and disrupted metabolic pathways. These findings provide new insights into potential associations between metabolic phenotypes and dietary intake, which may help inform individualized dietary approaches related to MetS, such as branched-chain amino acids-restricted diets (valine, isoleucine, leucine), reduced intake of hexose-rich carbohydrates, and modulation of niacin-rich protein sources according to individual metabolic profiles.
尽管代谢组学取得了进展,但韩国人群中代谢综合征(MetS)患者体内代谢物与营养摄入之间的复杂关系仍知之甚少。
本研究旨在描述与MetS相关的代谢组学特征和营养摄入情况,并在韩国基因组与流行病学研究(KoGES)的安山 - 安城队列中探讨它们之间的关系。
对KoGES安山 - 安城队列中的2306名中年成年人(1109名男性和1197名女性)的数据进行分析。采用液相色谱 - 质谱法测定血浆代谢物,共鉴定出135种代谢物。使用经过验证的半定量食物频率问卷评估营养摄入情况,该问卷涵盖23种营养素。通过Wilcoxon秩和检验、逻辑回归、偏最小二乘判别分析和组最小绝对收缩和选择算子分析,确定与MetS相关的代谢物和营养素。通路富集分析确定关键代谢途径,并应用固定效应模型评估基于MetS状态的代谢物 - 营养关系。
包括己糖(FC = 0.95,P = 7.04×10)、丙氨酸和支链氨基酸在内的11种代谢物,以及包括脂肪、视黄醇和胆固醇在内的3种营养素与MetS显著相关(FC范围 = 0.87 - 0.93;所有P < 0.05)。通路分析突出了精氨酸生物合成和精氨酸 - 脯氨酸代谢的紊乱。MetS组表现出6种非MetS组未观察到的独特代谢物 - 营养素对,包括“异亮氨酸 - 脂肪”、“异亮氨酸 - 磷”、“脯氨酸 - 脂肪”、“亮氨酸 - 脂肪”、“亮氨酸 - 磷”和“戊酰肉碱 - 烟酸”。值得注意的是,异亮氨酸和亮氨酸等支链氨基酸的代谢失调与氧化应激有关。重要的是,随机梯度下降分类器在8种机器学习模型中表现出最佳预测性能(曲线下面积,AUC = 0.84),突出了基于代谢物数据分类的稳健性。然而,缺乏外部验证限制了这些发现的普遍性。
对KoGES安山 - 安城队列进行的这项全面代谢组学分析揭示了与MetS相关的独特代谢特征和营养摄入模式,突出了代谢物 - 营养关系的改变和代谢途径的紊乱。这些发现为代谢表型与饮食摄入之间的潜在关联提供了新的见解,这可能有助于为与MetS相关的个性化饮食方法提供参考,例如限制支链氨基酸(缬氨酸、异亮氨酸、亮氨酸)的饮食、减少富含己糖的碳水化合物的摄入,以及根据个体代谢特征调整富含烟酸的蛋白质来源。