Shotgun Lipidomics by Sequential Precursor Ion Fragmentation on a Hybrid Quadrupole Time-of-Flight Mass Spectrometer

被引:97
|
作者
Simons, Brigitte [1 ]
Kauhanen, Dimple [2 ]
Sylvaenne, Tuulia [2 ]
Tarasov, Kirill [2 ]
Duchoslav, Eva [1 ]
Ekroos, Kim [2 ]
机构
[1] AB SCIEX, Concord, ON L4K4V8, Canada
[2] Zora Biosci, Biologinkuja 1, FI-2150 Espoo, Finland
来源
METABOLITES | 2012年 / 2卷 / 01期
关键词
MS/MSALL; lipidomics; lipid; QTOF; mass spectrometry;
D O I
10.3390/metabo2010195
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Shotgun lipidomics has evolved into a myriad of multi-dimensional strategies for molecular lipid characterization, including bioinformatics tools for mass spectrum interpretation and quantitative measurements to study systems-lipidomics in complex biological extracts. Taking advantage of spectral mass accuracy, scan speed and sensitivity of improved quadrupole linked time-of-flight mass analyzers, we developed a bias-free global lipid profiling acquisition technique of sequential precursor ion fragmentation called MS/MSALL. This generic information-independent tandem mass spectrometry (MS) technique consists of a Q1 stepped mass isolation window through a set mass range in small increments, fragmenting and recording all product ions and neutral losses. Through the accurate MS and MS/MS information, the molecular lipid species are resolved, including distinction of isobaric and isomeric species, and composed into more precise lipidomic outputs. The method demonstrates good reproducibility and at least 3 orders of dynamic quantification range for isomeric ceramides in human plasma. More than 400 molecular lipids in human plasma were uncovered and quantified in less than 12 min, including acquisitions in both positive and negative polarity modes. We anticipate that the performance of sequential precursor ion fragmentation both in quality and throughput will lead to the uncovering of new avenues throughout the biomedical research community, enhance biomarker discovery and provide novel information target discovery programs as it will prospectively shed new insight into affected metabolic and signaling pathways.
引用
收藏
页码:195 / 213
页数:19
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