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首页> 外文期刊>Journal of proteome research >Multicompartmental LC-Q-TOF-based metabonomics as an exploratory tool to identify novel pathways affected by polyphenol-rich diets in mice
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Multicompartmental LC-Q-TOF-based metabonomics as an exploratory tool to identify novel pathways affected by polyphenol-rich diets in mice

机译:基于多室LC-Q-TOF的代谢组学作为探索性工具,用于鉴定小鼠中富含多酚饮食的新途径

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摘要

Metabonomics has recently been used to study the physiological response to a given nutritional intervention, but such studies have usually been restricted to changes in either plasma or urine. In the present study, we demonstrate that the use of LC-Q-TOF-based metabolome analyses (foodstuff, plasma, urine, and caecal content metabolomes) in mice offer higher order information, including intra- and intercompartment relationships. To illustrate this, we performed an intervention study with three different phenolic-rich extracts in mice over 3 weeks. Both unsupervised (PCA) and supervised (PLS-DA) multivariate analyses used for pattern recognition revealed marked effects of diet in each compartment (plasma, urine, and caecal contents). Specifically, dietary intake of phenolic-rich extract affects pathways such as bile acid and taurine metabolism. Q-TOF-based metabonomics demonstrated that the number of correlations is higher in caecal contents and urine than in plasma. Moreover, intercompartment correlations showed that caecal contents-plasma correlations are the most frequent in mice, followed by plasma-urine ones. The number of inter- and intracompartment correlations is significantly affected by diet. These analyses reveal the complexity of interorgan metabolic relationships and their sensitivity to dietary changes.
机译:代谢组学最近已用于研究对给定营养干预的生理反应,但此类研究通常仅限于血浆或尿液的变化。在本研究中,我们证明了在小鼠中使用基于LC-Q-TOF的代谢组分析(食品,血浆,尿液和盲肠含量的代谢组)可提供更高级别的信息,包括车厢内和车厢间的关系。为了说明这一点,我们在3周内对小鼠中的三种不同的富含酚的提取物进行了干预研究。用于模式识别的无监督(PCA)和有监督(PLS-DA)多元分析均显示了饮食在每个区室(血浆,尿液和盲肠内容物)的显着影响。具体而言,富含酚的提取物的饮食摄入会影响诸如胆汁酸和牛磺酸代谢等途径。基于Q-TOF的代谢组学研究表明,盲肠内容物和尿液中的相关性数量高于血浆中的相关性。此外,室间相关性显示,盲肠含量与血浆的相关性在小鼠中最常见,其次是血浆尿液。饮食间会影响间间和间内的相关性。这些分析揭示了器官间代谢关系的复杂性及其对饮食变化的敏感性。

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