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Targeted analysis of microbial-generated phenolic acid metabolites derived from grape flavanols by gas chromatography-triple quadrupole mass spectrometry

机译:气相色谱-三重四极杆质谱法有针对性地分析源自葡萄黄烷醇的微生物产生的酚酸代谢物

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摘要

Grape-derived products contain a wide array of bioactive phenolic compounds which are of significant interest to consumers and researchers for their multiple health benefits. The majority of bioavailable grape polyphenols, including the most abundant flavan-3-ols,i.e.(+)-catechin and (−)-epicatechin, undergo extensive microbial metabolism in the gut, forming metabolites that can be highly bioavailable and bioactive. To gain a better understanding in microbial metabolism of grape polyphenols and to identify bioactive metabolites, advanced analytical methods are needed to accurately quantitate microbial-derived metabolites, particularly at trace levels, in addition to their precursors. This work describes the development and validation of a high-throughput, sensitive and reproducible GC-QqQ/MS method operated under MRM mode that allowed the identification and quantification of 16 phenolic acid metabolites, along with (+)-catechin and (−)-epicatechin, in flavanol-enriched broth samples anaerobically fermented with human intestinal bacteria. Excellent sensitivity was achieved with low limits of detection and low limits of quantification in the range of 0.24–6.18 ng/mL and 0.480–12.37 ng/mL, respectively. With the exception of hippuric acid, recoveries of most analytes were greater than 85%. The percent accuracies for almost all analytes were within ±23% and precision results were all below 18%. Application of the developed method toin vitrosamples fermented with different human gut microbiota revealed distinct variations in the extent of flavanol catabolism, as well as production of bioactive phenolic acid metabolites. These results support that intestinal microbiota have a significant impact on the production of flavanol metabolites. The successful application of the established method demonstrates its applicability and robustness for analysis of grape flavanols and their microbial metabolites in biological samples.
机译:葡萄衍生的产品包含各种各样的生物活性酚类化合物,由于其对健康的多重益处,消费者和研究人员对此非常感兴趣。大多数可生物利用的葡萄多酚,包括最丰富的黄烷-3-醇,即(+)-儿茶素和(-)-表儿茶素,在肠道中都会经历广泛的微生物代谢,形成具有高生物利用度和生物活性的代谢产物。为了更好地了解葡萄中多酚的微生物代谢并鉴定生物活性代谢物,需要先进的分析方法来准确定量微生物衍生的代谢物,尤其是痕量的微生物衍生代谢物。这项工作描述了在MRM模式下运行的高通量,灵敏且可重现的GC-QqQ / MS方法的开发和验证,该方法可以鉴定和定量16种酚酸代谢物以及(+)-儿茶素和(-)-表儿茶素,在富含黄烷醇的肉汤中厌氧发酵的人类肠道细菌。低检测限和低定量限分别在0.24–6.18 ng / mL和0.480–12.37 ng / mL的范围内实现了出色的灵敏度。除马尿酸外,大多数分析物的回收率均大于85%。几乎所有分析物的准确度百分比均在±23%以内,而精密度结果均低于18%。将开发的方法应用于不同人类肠道菌群发酵的体外样品后,发现黄烷醇分解代谢程度以及生物活性酚酸代谢产物的产生都存在明显差异。这些结果支持肠道菌群对黄烷醇代谢产物的产生具有重大影响。所建立方法的成功应用证明了其在生物样品中分析葡萄黄烷醇及其微生物代谢产物的适用性和鲁棒性。

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