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一项为期六周的随机试验中饮食干预的机器学习代谢组学分析

Machine Learning Metabolomics Profiling of Dietary Interventions from a Six-Week Randomised Trial.

作者信息

Kouraki Afroditi, Nogal Ana, Nocun Weronika, Louca Panayiotis, Vijay Amrita, Wong Kari, Michelotti Gregory A, Menni Cristina, Valdes Ana M

机构信息

Academic Unit of Injury, Recovery and Inflammation Sciences, Rheumatology, School of Medicine, University of Nottingham, Nottingham NG7 2UH, UK.

NIHR Nottingham Biomedical Research Centre, Nottingham University Hospitals NHS Trust and the University of Nottingham, Nottingham NG7 2UH, UK.

出版信息

Metabolites. 2024 May 29;14(6):311. doi: 10.3390/metabo14060311.

Abstract

Metabolomics can uncover physiological responses to prebiotic fibre and omega-3 fatty acid supplements with known health benefits and identify response-specific metabolites. We profiled 534 stool and 799 serum metabolites in 64 healthy adults following a 6-week randomised trial comparing daily omega-3 versus inulin supplementation. Elastic net regressions were used to separately identify the serum and stool metabolites whose change in concentration discriminated between the two types of supplementations. Random forest was used to explore the gut microbiome's contribution to the levels of the identified metabolites from matching stool samples. Changes in serum 3-carboxy-4-methyl-5-propyl-2-furanpropanoate and indoleproprionate levels accurately discriminated between fibre and omega-3 (area under the curve (AUC) = 0.87 [95% confidence interval (CI): 0.63-0.99]), while stool eicosapentaenoate indicated omega-3 supplementation (AUC = 0.86 [95% CI: 0.64-0.98]). Univariate analysis also showed significant increases in indoleproprionate with fibre, 3-carboxy-4-methyl-5-propyl-2-furanpropanoate, and eicosapentaenoate with omega-3. Out of these, only the change in indoleproprionate was partly explained by changes in the gut microbiome composition (AUC = 0.61 [95% CI: 0.58-0.64] and Rho = 0.21 [95% CI: 0.08-0.34]) and positively correlated with the increase in the abundance of the genus ( = 0.005). Changes in three metabolites discriminated between fibre and omega-3 supplementation. The increase in indoleproprionate with fibre was partly explained by shifts in the gut microbiome, particularly , previously linked to better health.

摘要

代谢组学能够揭示益生元纤维和ω-3脂肪酸补充剂对生理的反应,这些补充剂具有已知的健康益处,并能识别特定反应的代谢物。在一项为期6周的随机试验中,我们对64名健康成年人的534种粪便代谢物和799种血清代谢物进行了分析,该试验比较了每日补充ω-3与菊粉的效果。弹性网络回归用于分别识别血清和粪便代谢物,其浓度变化可区分两种类型的补充剂。随机森林用于探索肠道微生物群对来自匹配粪便样本的已识别代谢物水平的贡献。血清3-羧基-4-甲基-5-丙基-2-呋喃丙酸酯和吲哚丙酸水平的变化准确地区分了纤维和ω-3(曲线下面积(AUC)=0.87[95%置信区间(CI):0.63-0.99]),而粪便二十碳五烯酸酯表明补充了ω-3(AUC=0.86[95%CI:0.64-0.98])。单变量分析还显示,纤维组中吲哚丙酸、3-羧基-4-甲基-5-丙基-2-呋喃丙酸酯显著增加,ω-3组中二十碳五烯酸酯显著增加。其中,只有吲哚丙酸的变化部分由肠道微生物群组成的变化所解释(AUC=0.61[95%CI:0.58-0.64],Rho=0.21[95%CI:0.08-0.34]),并且与属丰度的增加呈正相关(P=0.005)。三种代谢物的变化区分了纤维和ω-3补充剂。纤维组中吲哚丙酸的增加部分由肠道微生物群的变化所解释,特别是与更好健康状况相关的[属名未给出]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e85b/11205626/e49f29fd0846/metabolites-14-00311-g001.jpg

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