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建立并验证 UHPLC-HRMS 方法用于分析大鼠经红葡萄酒原花青素提取物灌胃后尿液、血浆和粪便中黄烷-3-醇代谢物和分解产物

Development and validation of an UHPLC-HRMS protocol for the analysis of flavan-3-ol metabolites and catabolites in urine, plasma and feces of rats fed a red wine proanthocyanidin extract.

机构信息

Department of Food and Health, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), Avenida Menendez-Pidal, SN, 14004 Córdoba, Spain.

Department of Food and Health, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), Avenida Menendez-Pidal, SN, 14004 Córdoba, Spain.

出版信息

Food Chem. 2018 Jun 30;252:49-60. doi: 10.1016/j.foodchem.2018.01.083. Epub 2018 Jan 12.

Abstract

This study developed, optimized and validated an ultra-high-performance liquid chromatography-high-resolution mass spectrometry (UHPLC-HRMS) method to identify and quantify metabolites and microbial-derived catabolites in urine, plasma and feces of rats following ingestion of 50 mg of a red wine proanthocyanidin-rich extract. The method was validated for specificity, linearity, limit of detection (LD) and quantification (LQ), intra-day and inter-day precision, recovery and matrix effects, which were determined for 34 compounds in the three biological matrices. After method validation, three parent flavan-3-ols, four 5-carbon side chain ring fission metabolites, and 27 phenolic acid and aromatic catabolites were quantified in plasma, urine and feces after red wine proanthocyanidin intake. These results establish the value of the UHPLC-HRMS protocol in obtaining a detailed picture of proanthocyanidin metabolites and their microbial-derived catabolites, along with their phase II metabolites, in biological fluids of rat, and potentially in human clinical studies designed to evaluate the bioavailability of dietary flavan-3-ols.

摘要

本研究开发、优化并验证了一种超高效液相色谱-高分辨质谱(UHPLC-HRMS)方法,用于鉴定和定量大鼠摄入 50mg 红酒原花青素丰富提取物后尿液、血浆和粪便中的代谢物和微生物衍生的代谢物。该方法针对 34 种化合物在三种生物基质中的特异性、线性、检测限(LD)和定量限(LQ)、日内和日间精密度、回收率和基质效应进行了验证。方法验证后,在摄入红酒原花青素后,血浆、尿液和粪便中定量了三种母体黄烷-3-醇、四种 5-碳侧链环裂代谢物以及 27 种酚酸和芳香族代谢物。这些结果表明,UHPLC-HRMS 方案在获得大鼠生物体液中原花青素代谢物及其微生物衍生代谢物及其 II 期代谢物的详细信息方面具有价值,并且可能在设计用于评估膳食黄烷-3-醇生物利用度的人类临床研究中具有价值。

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