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栀子汁摄入后人体主要的尿代谢产物。

Main Human Urinary Metabolites after Genipap ( L.) Juice Intake.

机构信息

Federal University of Pará & Centre for Valorization of Amazonian Bioactive Compounds (CVACBA), Parque de Ciência e Tecnologia Guamá, Avenida Perimetral da Ciência, km 01, Guamá 66075-750, Brazil.

Naturex SA, 250 rue Pierre Bayle, BP81218, 84911 Avignon CEDEX 9, France.

出版信息

Nutrients. 2018 Aug 24;10(9):1155. doi: 10.3390/nu10091155.

Abstract

Genipap ( L.) is a native fruit from Amazonia that contains bioactive compounds with a wide range of bioactivities. However, the response to genipap juice ingestion in the human exposome has never been studied. To identify biomarkers of genipap exposure, the untargeted metabolomics approach in human urine was applied. Urine samples from 16 healthy male volunteers, before and after drinking genipap juice, were analyzed by liquid chromatography⁻high-resolution mass spectrometry. XCMS package was used for data processing in the R environment and -tests were applied on log-transformed and Pareto-scaled data to select the significant metabolites. The principal component analysis (PCA) score plots showed a clear distinction between experimental groups. Thirty-three metabolites were putatively annotated and the most discriminant were mainly related to the metabolic pathways of iridoids and phenolic derivatives. For the first time, the bioavailability of genipap iridoids after human consumption is reported. Dihydroxyhydrocinnamic acid, (1R,6R)-6-hydroxy-2-succinylcyclohexa-2,4-diene-1-carboxylate, hydroxyhydrocinnamic acid, genipic acid, 12-demethylated-8-hydroxygenipinic acid, 3(7)-dehydrogenipinic acid, genipic acid glucuronide, nonate, and 3,4-dihydroxyphenylacetate may be considered biomarkers of genipap consumption. Human exposure to genipap reveals the production of derivative forms of bioactive compounds such as genipic and genipinic acid. These findings suggest that genipap consumption triggers effects on metabolic signatures.

摘要

吉纳帕(Genipap)是亚马逊地区的一种本土水果,含有具有广泛生物活性的生物活性化合物。然而,人类暴露组中从未研究过吉纳帕果汁摄入的反应。为了确定吉纳帕暴露的生物标志物,应用了非靶向代谢组学方法在人类尿液中进行分析。对 16 名健康男性志愿者饮用吉纳帕果汁前后的尿液样本进行了分析,采用液相色谱-高分辨率质谱法。在 R 环境中使用 XCMS 软件包对数据进行处理,并对对数转换和 Pareto 缩放后的数据应用 t 检验,以选择显著的代谢物。主成分分析(PCA)得分图显示实验组之间存在明显区别。推测出 33 种代谢物,并对最具区分性的代谢物进行了注释,这些代谢物主要与裂环环烯醚萜和酚类衍生物的代谢途径有关。首次报道了人类消费后吉纳帕裂环环烯醚萜的生物利用度。二羟基肉桂酸、(1R,6R)-6-羟基-2-琥珀酰环己-2,4-二烯-1-羧酸、羟基肉桂酸、吉纳皮酸、12-去甲基-8-羟基吉纳皮酸、3(7)-脱氢吉纳皮酸、吉纳皮酸葡萄糖醛酸、壬酸和 3,4-二羟基苯乙酸可能被认为是吉纳帕消费的生物标志物。人类接触吉纳帕会产生生物活性化合物如吉纳皮酸和吉纳皮酸的衍生形式。这些发现表明吉纳帕的消费会引发代谢特征的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/540f/6165415/4cdb6c9f5483/nutrients-10-01155-g001.jpg

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