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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Development and validation of an ultra-high performance liquid chromatography/triple quadrupole mass spectrometry method for analyzing microbial-derived grape polyphenol metabolites
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Development and validation of an ultra-high performance liquid chromatography/triple quadrupole mass spectrometry method for analyzing microbial-derived grape polyphenol metabolites

机译:超高效液相色谱/三重四极孔质谱法的显影与验证分析微生物衍生葡萄多酚代谢物的分析

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Accumulating evidence indicates that the health impact of dietary phenolic compounds, including the principal grape-derived polyphenols, (+)-catechin and (-)-epicatechin, is exerted by not only the parent compounds but also their phenolic metabolites generated by the gut microbiota. In this work, a new high-throughput, sensitive and reproducible analytical method was developed employing ultra-high performance liquid chromatography coupled with triple quadrupole tandem mass spectrometry (UHPLC-QqQ-MS/MS) for the simultaneous analysis of 16 microbial-generated phenolic acid metabolites (PAMs) along with their precursors, catechin and epicatechin. Following optimizing the solvent system, LC conditions and MS parameters, method validation was carried out to evaluate the sensitivity, selectivity, accuracy and precision of the proposed method, and to ensure promising recovery of all analytes extracted from the matrix prior to bioanalysis. Results showed that the optimized analytical method allowed successful confirmation and quantitation of all analytes under dynamic multiple reaction monitoring mode using trans-cinnamic acid-d(7) as an internal standard (I.S.). Excellent sensitivity and linearity were obtained for all analytes, with lower limits of detection (LLODs) and lower limits of quantification (LLOQs) in the ranges of 0.225-2.053 ng/mL and 0.698-8.116 ng/mL, respectively. By examining blank matrix spiked with standard mixture at different concentration levels, promising recoveries at two spiking levels (low level, 91.2-115%; high level 90.2-121%), and excellent precision (RSD 10%) were obtained. This method was then successfully applied to an in vitro study where catechin/epicatechin-enriched broth samples were anaerobically fermented with gut microbes procured from healthy human donors. All sources of bacteria employed showed remarkable activity in metabolizing grape polyphenols and distinct variations in the production of PAMs. The successful application of this method in the in vitro fermentation assays demonstrates its suitability for high-throughput analysis of polyphenol metabolites, particularly catechin/epicatechin-derived PAMs, in biological studies.
机译:累积证据表明,不仅通过母体化合物而且还施加了饮食酚醛化合物,包括主要葡萄衍生的多酚,(+) - 儿茶素和( - ) - 表古蛋白酶的健康影响,还施加肠道微生物产生的酚醛代谢物。在这项工作中,开发了一种新的高通量,灵敏和可重复的分析方法,采用超高效液相色谱,与三重四极杆串联质谱(UHPLC-QQQ-MS / MS)相偶联,用于同时分析16微生物产生的酚醛酸性代谢物(PAMS)以及它们的前体,儿茶素和EPICATECHIN。在优化溶剂系统,LC条件和MS参数之后,进行了方法验证,以评估所提出的方法的灵敏度,选择性,准确度和精度,并确保在生物分析之前从基质中提取的所有分析物的承诺恢复。结果表明,优化的分析方法允许使用Trans-Cinnamic acid-D(7)作为内标(I.)的动态多反应监测模式下的所有分析物的所有分析物的成功确认和定量。为所有分析物提供了优异的敏感性和线性,分别是检测(LLOD)的较低限制,分别为0.225-2.053ng / mL和0.698-8.116ng / ml的较低定量(LLOQ)。通过在不同浓度水平上用标准混合物掺入的空白基质,在两个尖峰水平(低水平,91.2-115%;高90.2-121%),并且获得优异的精度(RSD 10)。然后将该方法成功地应用于体外研究,其中CaTechin / EpicaTeChin的肉汤样品与受健康人供体采购的肠道微生物厌氧发酵。使用的所有细菌来源在代谢葡萄多酚和斑马生产中的不同变化中表现出显着的活性。该方法在体外发酵测定中的成功应用证明了其在生物学研究中对多酚代谢物,特别是儿茶素/ EpicateChin衍生的PAM的高通量分析的适合性。

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