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首页> 外文期刊>RSC Advances >Multi-dimensional, comprehensive sample extraction combined with LC-GC/MS analysis for complex biological samples: application in the metabolomics study of acute pancreatitis
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Multi-dimensional, comprehensive sample extraction combined with LC-GC/MS analysis for complex biological samples: application in the metabolomics study of acute pancreatitis

机译:多维,综合样品萃取与综合生物样品的LC-GC / MS分析相结合:在急性胰腺炎的代谢组科研究中的应用

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摘要

An analytical strategy employing multi-dimensional sample extraction together with optimal analytical platforms was established. The proposed workflow was based on the fact that most biological samples are complex in terms of molecular species as well as their properties, e.g. hydrophobicity. A few new methods based on methyl tert -butyl ether (MTBE) extraction, which was developed for lipid extraction and used perform a lipidomic study on the upper layer fraction of the MTBE extraction system and a metabolomics analysis by mixing the upper and lower fractions from the same sample, have been developed to acquire more information from samples, and in the present work we established a similar method employing the MTBE procedure to separate samples into polar and apolar fractions, then associated each with an adapted subsequent analysis technique. The polar fraction was silylanized for GC/MS analysis, and apolar lipids were analyzed by reverse phase liquid chromatography (RPLC) on a T3 column. The proposed strategy was applied to investigate acute human pancreatitis and was compared with results obtained by conventional LC/MS-only and GC/MS-only analysis. Features obtained in our LC-GC/MS data outnumbered either the LC/MS-only or GC/MS-only data. Furthermore, with the aid of multivariate analysis, differential metabolites from pancreatitis vs. normal pancreas, mainly amino acids and phospholipids, were identified. This work demonstrates that the proposed analytical strategy is a promising tool to perform metabolomics. In addition, it improved our understanding of the pathogenesis of acute pancreatitis and provided potential biomarkers for AP diagnosis.
机译:建立了采用多维样品提取的分析策略以及最佳分析平台。所提出的工作流程是基于大多数生物样品在分子种类以及它们的性质方面复杂的事实,例如,它们是复杂的。疏水性。基于甲基叔丁基醚(MTBE)萃取的一些新方法,用于脂质萃取和使用对MTBE提取系统的上层分数和通过混合上下级分来进行脂质族研究和代谢组分析已经开发了相同的样本以获取来自样本的更多信息,并且在本工作中,我们建立了类似方法,该方法采用MTBE程序将样品分离成极性和膨胀级分,然后用适应的后续分析技术相关联。极性级分是为GC / MS分析的硅烷值化,并且通过反相液相色谱(RPLC)在T3柱上分析恶性脂质。应用拟议的策略用于调查急性人类胰腺炎,并与常规LC / MS-ock和GC / MS-POSE分析获得的结果进行比较。我们的LC-GC / MS数据中获得的功能突出了LC / MS-ONLE或GC / MS-PSE数据。此外,借助多变量分析,鉴定了来自胰腺炎的差分代谢物,主要是胰腺,主要是氨基酸和磷脂。这项工作表明,所提出的分析策略是执行代谢组学的有希望的工具。此外,它还改善了我们对急性胰腺炎发病机制的理解,并为AP诊断提供了潜在的生物标志物。

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