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Integrated, Nontargeted Ultrahigh Performance Liquid Chromatography/Electrospray Ionization Tandem Mass Spectrometry Platform for the Identification and Relative Quantification of the Small-Molecule Complement of Biological Systems

机译:集成的非靶向超高效液相色谱/电喷雾串联质谱平台,用于鉴定和相对定量生物系统的小分子补体

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摘要

To address the challenges associated with metabolomics analyses, such as identification of chemical structures and elimination of experimental artifacts, we developed a platform that integrated the chemical analysis, including identification and relative quantification, data reduction, and quality assurance components of the process. The analytical platform incorporated two separate ultrahigh performance liquid chromatography/tandem mass spectrometry (UHPLC/MS/MS~(2)) injections; one injection was optimized for basic species, and the other was optimized for acidic species. This approach permitted the detection of 339 small molecules, a total instrument analysis time of 24 min (two injections at 12 min each), while maintaining a median process variability of 9percent. The resulting MS/MS~(2) data were searched against an in-house generated authentic standard library that included retention time, molecular weight (m/z), preferred adducts, and in-source fragments as well as their associated MS/MS spectra for all molecules in the library. The library allowed the rapid and high-confidence identification of the experimentally detected molecules based on a multiparameter match without need for additional analyses. This integrated platform enabled the high-throughput collection and relative quantitative analysis of analytical data and identified a large number and broad spectrum of molecules with a high degree of confidence.
机译:为了解决与代谢组学分析相关的挑战,例如化学结构的鉴定和实验伪影的消除,我们开发了一个平台,该平台集成了化学分析,包括鉴定和相对定量,数据减少以及过程的质量保证组成部分。该分析平台结合了两个独立的超高效液相色谱/串联质谱(UHPLC / MS / MS〜(2))进样;一种注射剂针对碱性物种进行了优化,另一种针对酸性物种进行了优化。这种方法可以检测339个小分子,仪器的总分析时间为24分钟(两次进样,每次进样为12分钟),同时使过程中位数变异性保持在9%。根据内部生成的真实标准库搜索得到的MS / MS〜(2)数据,其中包括保留时间,分子量(m / z),优选的加合物和源片段以及相关的MS / MS库中所有分子的光谱。该文库允许基于多参数匹配对实验检测到的分子进行快速而高信度的鉴定,而无需进行其他分析。这个集成的平台可以对分析数据进行高通量收集和相对定量分析,并以高度的可信度识别出大量的分子。

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