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Optimization of Electrospray Ionization Source Parameters for Lipidomics To Reduce Misannotation of In-Source Fragments as Precursor Ions

机译:用于脂质族学的电喷雾电离源参数的优化,降低源片内碎片作为前体离子的缺陷

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摘要

Lipidomics requires the accurate annotation of lipids in complex samples to enable determination of their biological relevance. We demonstrate that unintentional in-source fragmentation (ISF, common in lipidomics) generates ions that have identical masses to other lipids. Lysophosphatidylcholines (LPC), for example, generate in-source fragments with the same mass as free fatty acids and lysophosphatidylethanolamines (LPE). The misannotation of in source fragments as true lipids is particularly insidious in complex matrixes since most masses are initially unannotated and comprehensive lipid standards are unavailable. Indeed, we show such LPE/LPC misannotations are incorporated in the data submitted to the National Institute of Standards and Technology (NIST) interlaboratory comparison exercise. Computer simulations exhaustively identified potential misannotations. The selection of in-source fragments of highly abundant lipids as features, instead of the correct recognition of trace lipids, can potentially lead to (i) missing the biologically relevant lipids (i.e., a false negative) and/or (ii) incorrect assignation of a phenotype to an incorrect lipid (i.e., false positive). When ISF is not eliminated in the negative ion mode, similar to 40% of the 100 most abundant masses corresponding to unique phospholipids measured in plasma were artifacts from ISF. We show that chromatographic separation and ion intensity considerations assist in distinguishing precursor ions from in-source fragments, suggesting ISF may be especially problematic when complex samples are analyzed via shotgun lipidomics. We also conduct a systematic evaluation of electrospray ionization (ESI) source parameters on an Exactive equipped with a heated electrospray ionization (HESI-II) source with the objective of obtaining uniformly appropriate source conditions for a wide range of lipids, while, at the same time, reducing in-source fragmentation.
机译:脂多元族人需要在复杂样品中准确注释脂质,以便能够确定它们的生物相关性。我们证明了无意的源自源片段化(ISF,脂质学中常见)产生与其他脂质具有相同质量的离子。例如,溶血磷脂酰胆碱(LPC),例如,用与游离脂肪酸和透磷脂酰乙醇胺(LPE)相同的质量产生源自源片段。由于大多数群众最初未公开,因此大多数群众都不可用。实际上,我们展示了此类LPE / LPC缺陷型在提交给国家标准和技术研究所(NIST)的间接计比较练习中的数据中。计算机仿真详尽确定了潜在的误操作。选择高度丰富的脂质的源自源片作为特征,而不是正确识别痕量脂质,可能导致(i)缺少生物学相关的脂质(即,假阴性)和/或(ii)不正确的分配脂质的表型(即,假阳性)。当在负离子模式中未被消除ISF时,类似于100个对应于血浆中测量的独特磷脂的100个最丰富的群体的40%是来自ISF的伪像。我们表明,色谱分离和离子强度考虑有助于区分来自源极片段的前体离子,表明通过霰弹枪脂多种族菌分析复杂样品时可能特别有问题。我们还对具有加热电喷涂电离(HESi-II)源的辐射电离(ESI)源参数进行系统评估,其目的是获得均匀的脂质的均匀源条件,而在相同的情况下时间,减少源自裂缝碎片。

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  • 来源
    《Analytical chemistry》 |2018年第22期|共10页
  • 作者单位

    Brigham &

    Womens Hosp Div Sleep &

    Circadian Disorders Dept Med 75 Francis St Boston MA 02115 USA;

    Brigham &

    Womens Hosp Div Sleep &

    Circadian Disorders Dept Med 75 Francis St Boston MA 02115 USA;

    Brigham &

    Womens Hosp Div Sleep &

    Circadian Disorders Dept Med 75 Francis St Boston MA 02115 USA;

    Brigham &

    Womens Hosp Div Sleep &

    Circadian Disorders Dept Med 75 Francis St Boston MA 02115 USA;

    Univ Florida Coll Vet Med Dept Physiol Sci Ctr Environm &

    Human Toxicol Gainesville FL 32610 USA;

    Univ Florida Coll Med Dept Pathol Immunol &

    Lab Med Gainesville FL 32610 USA;

    NIH Div Nutr Res Coordinat Bldg 10 Bethesda MD 20892 USA;

    NIH Div Nutr Res Coordinat Bldg 10 Bethesda MD 20892 USA;

    Brigham &

    Womens Hosp Div Sleep &

    Circadian Disorders Dept Med 75 Francis St Boston MA 02115 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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