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不同轨道阱质谱仪上的脂质源内碎裂的评价。

Evaluation of Lipid In-Source Fragmentation on Different Orbitrap-based Mass Spectrometers.

机构信息

Thermo Fisher Scientific , Hanna-Kunath-Str. 11 , 28199 Bremen , Germany.

Institute of Bioanalytical Chemistry, Faculty of Chemistry and Mineralogy , Universität Leipzig , Deutscher Platz 5 , 04103 Leipzig , Germany.

出版信息

J Am Soc Mass Spectrom. 2020 Feb 5;31(2):463-466. doi: 10.1021/jasms.9b00061. Epub 2019 Dec 24.

Abstract

Natural lipidomes represent a complex mixture of lipid molecular species with a variety of biological and signaling functions. Modern mass spectrometry (MS)-based analytical platforms are often used to resolve the complexity of natural lipidomes. The quantitative transfer of lipid molecular species in the gas phase during the electrospray ionization required for MS analysis might be challenged by lipid in-source fragmentation (ISF) hampering their accurate identification and quantification. Here we evaluated the effect of transmission radio frequency (RF) levels and ion transfer temperatures (ITTs) on the analysis of four different lipids (ceramide, cholesteryl ester, phosphatidylethanolamine, and triacylglyceride) ionized in positive ion mode on three different Orbitrap-based platforms. ITT and RF levels were ramped in a systematic way to determine the best settings, allowing the most sensitive detection accompanied by the lowest ISF of a lipid. The extent of the ISF was shown to depend on the configurations of the transmission devices (S-lens vs letterbox/ion funnel) at defined RF and ITT levels for each studied lipid class. We provide here the recommendations for reducing the extent of lipid ISF without a significant loss in sensitivity for Q Exactive HF, Q Exactive HF-X, and Orbitrap Fusion Lumos platforms.

摘要

天然脂质组代表了具有多种生物学和信号功能的脂质分子种类的复杂混合物。现代基于质谱(MS)的分析平台通常用于解析天然脂质组的复杂性。在 MS 分析中,电喷雾电离所需的气相中脂质分子种类的定量转移可能会受到脂质源内碎裂(ISF)的阻碍,从而影响其准确的鉴定和定量。在这里,我们评估了传输射频(RF)水平和离子转移温度(ITT)对正离子模式下四种不同脂质(神经酰胺、胆固醇酯、磷脂酰乙醇胺和三酰基甘油)离子化的三种不同轨道阱质谱平台分析的影响。ITT 和 RF 水平以系统的方式进行调节,以确定最佳设置,在不影响脂质灵敏度的情况下,实现最敏感的检测和最低的 ISF。结果表明,ISF 的程度取决于传输装置(S-透镜与 letterbox/ion 漏斗)的配置,以及每个研究的脂质类别在特定 RF 和 ITT 水平下的配置。我们在此为 Q Exactive HF、Q Exactive HF-X 和 Orbitrap Fusion Lumos 平台提供了减少脂质 ISF 程度的建议,同时不会显著降低灵敏度。

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