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A Comprehensive UHPLC Ion Mobility Quadrupole Time-of-Flight Method for Profiling and Quantification of Eicosanoids, Other Oxylipins, and Fatty Acids

机译:全面的UHPLC离子迁移率四轴飞行时间方法,用于逐渐筛选和定量果香素,其他氧化普林斯和脂肪酸

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Analysis of oxylipins by liquid chromatography mass spectrometry (LC/MS) is challenging because of the small mass range occupied by this diverse lipid class, the presence of numerous structural isomers, and their low abundance in biological samples. Although highly sensitive LC/MS/MS methods are commonly used, further separation is achievable by using drift tube ion mobility coupled with high-resolution mass spectrometry (DTIM-MS). Herein, we present a combined analytical and computational method for the identification of oxylipins and fatty acids. We use a reversed-phase LC/DTIM-MS workflow able to profile and quantify (based on chromatographic peak area) the oxylipin and fatty acid content of biological samples while simultaneously acquiring full scan and product ion spectra. The information regarding accurate mass, collision-cross-section values in nitrogen ((CCSN2)-C-DT), and retention times of the species found are compared to an internal library of lipid standards as well as the LIPID MAPS Structure Database by using specifically developed processing tools. Features detected within the (CCSN2)-C-DT and m/z ranges of the analyzed standards are flagged as oxylipin-like species, which can be further characterized using drift-time alignment of product and precursor ions distinctive of DTIM-MS. This not only helps identification by reducing the number of annotations from LIPID MAPS but also guides discovery studies of potentially novel species. Testing the methodology on Salmonella enterica serovar Typhimurium-infected murine bone-marrow-derived macrophages and thrombin activated human platelets yields results in agreement with literature. This workflow has also annotated features as potentially novel oxylipins, confirming its ability in providing further insights into lipid analysis of biological samples.
机译:通过液相色谱法质谱(LC / MS)分析氧化吡汀是挑战,因为这种多样化的脂质类占据的小质量范围,许多结构异构体的存在,以及它们在生物样品中的低丰度。虽然常用了高敏感的LC / MS / MS方法,但是通过使用与高分辨率质谱(DTIM-MS)耦合的漂移管离子迁移率来实现进一步的分离。在此,我们提出了一种用于鉴定氧化吡啶和脂肪酸的组合分析和计算方法。我们使用能够概况和量化(基于色谱峰面积)的逆相LC / DTIM-MS工作流,同时获取全扫描和产物离子光谱的生物样品的奥氧脂和脂肪酸含量。关于氮气((CCSN2)-C-DT)中精确质量,碰撞 - 截面值的信息,并将发现的物种的保留时间与脂质标准的内部库以及通过使用的脂质地图结构数据库进行比较专门开发的加工工具。分析标准标准的(CCSN2)-C-DT和M / Z范围内检测到的特征被标记为氧基普蛋白样物种,其可以使用与DTIM-MS的产品和前体离子的漂移 - 时对准进一步表征。这不仅通过减少脂质地图的注释数量而且有助于识别,还可以指导对潜在的新种类的发现研究。测试沙门氏菌肠道塞洛维拉氏菌感染的鼠骨髓 - 源巨噬细胞和凝血酶活化人血小板的方法导致与文献一致产生。该工作流还具有潜在的新氧化吡啶的标注特征,确认其能够进一步了解生物样品的脂质分析。

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