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Widely-targeted quantitative lipidomics method by supercritical fluid chromatography triple quadrupole mass spectrometry

机译:超临界流体色谱三重四极杆质谱法的广谱定量脂质组学方法

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摘要

Lipidomics, the mass spectrometry-based comprehensive analysis of lipids, has attracted attention as an analytical approach to provide novel insight into lipid metabolism and to search for biomarkers. However, an ideal method for both comprehensive and quantitative analysis of lipids has not been fully developed. Here, we have proposed a practical methodology for widely targeted quantitative lipidome analysis using supercritical fluid chromatography fast-scanning triple-quadrupole mass spectrometry (SFC/QqQMS) and theoretically calculated a comprehensive lipid multiple reaction monitoring (MRM) library. Lipid classes can be separated by SFC with a normal-phase diethylamine-bonded silica column with high resolution, high throughput, and good repeatability. Structural isomers of phospholipids can be monitored by mass spectrometric separation with fatty acyl-based MRM transitions. SFC/QqQMS analysis with an internal standard-dilution method offers quantitative information for both lipid class and individual lipid molecular species in the same lipid class. Additionally, data acquired using this method has advantages, including reduction of misidentification and acceleration of data analysis. Using the SFC/QqQMS system, alteration of plasma lipid levels in myocardial infarction-prone rabbits to the supplementation of EPA was first observed. Our developed SFC/QqQMS method represents a potentially useful tool for in-depth studies focused on complex lipid metabolism and biomarker discovery.—Takeda, H., Y. Izumi, M. Takahashi, T. Paxton, S. Tamura, T. Koike, Y. Yu, N. Kato, K. Nagase, M. Shiomi, and T. Bamba.
机译:脂质组学是一种基于质谱的脂质综合分析方法,它作为一种分析方法可引起人们的注意,该方法可提供有关脂质代谢的新见解并寻找生物标记物。然而,还没有完全开发出用于脂质的全面和定量分析的理想方法。在这里,我们提出了一种实用的方法,用于使用超临界流体色谱快速扫描三重四极杆质谱(SFC / QqQMS)进行广泛靶向的定量脂质组分析,并从理论上计算出了全面的脂质多反应监测(MRM)库。可以通过SFC用正相二乙胺键合硅胶柱分离脂质类,具有高分辨率,高通量和良好的重复性。磷脂的结构异构体可以通过基于脂肪酰基的MRM跃迁的质谱分离进行监测。采用内标稀释法的SFC / QqQMS分析可提供有关脂质类别和同一脂质类别中单个脂质分子种类的定量信息。此外,使用此方法获取的数据具有很多优点,包括减少了误识别和加快了数据分析的速度。使用SFC / QqQMS系统,首先观察到心肌梗死易患兔血浆脂质水平通过添加EPA的改变。我们开发的SFC / QqQMS方法代表着潜在的有用工具,可用于深入研究复杂的脂质代谢和生物标记物发现。—Takeda,H.,Y. Izumi,M. Takahashi,T. Paxton,S. Tamura,T.Koike ,Y。Yu,N。Kato,K。Nagase,M。Shiomi和T. Bamba。

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