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首页> 外文期刊>Analytical chemistry >Comprehensive and Quantitative Analysis of Lysophospholipid Molecular Species Present in Obese Mouse Liver by Shotgun Lipidomics
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Comprehensive and Quantitative Analysis of Lysophospholipid Molecular Species Present in Obese Mouse Liver by Shotgun Lipidomics

机译:Shot弹枪脂质学对肥胖小鼠肝脏中溶血磷脂分子种类的综合和定量分析

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摘要

Shotgun lipidomics exploits the unique chemical and physical properties of lipid classes and individual molecular species to facilitate the high-throughput analysis of a cellular lipidome on a large scale directly from the extracts of biological samples. A platform for comprehensive analysis of lysophospholipid (LPL) species based on shotgun lipidomics has not been established. Herein, after extensive characterization of the fragmentation pattern of individual LPL class and optimization of all experimental conditions including developing new methods for optimization of collision energy, and recovery and enrichment of LPL classes from the aqueous phase after solvent extraction, a new method for comprehensive and quantitative analysis of LPL species was developed. This newly developed method was applied for comprehensive analysis of LPL species present in mouse liver samples. Remarkably, the study revealed significant accumulation of LPL species in the liver of ob/ob mice. Taken together, by exploiting the principles of shotgun lipidomics in combination with a novel strategy of sample preparation, LPL species present in biological samples can be determined by the established method. We believe that this development is significant and useful for understanding the pathways of phospholipid metabolism and for elucidating the role of LPL species in signal transduction and other biological functions.
机译:gun弹枪脂质组学利用脂质类别和单个分子种类的独特化学和物理特性,促进直接从生物样品提取物中大规模大规模进行细胞脂质组的高通量分析。尚未建立基于散弹枪脂质组学的溶血磷脂(LPL)种类的综合分析平台。在此,对各个LPL类的碎裂模式进行了广泛的表征并优化了所有实验条件,包括开发了优化碰撞能量的新方法,以及从溶剂萃取后的水相中回收和富集LPL类的新方法,从而实现了一种对LPL种类进行定量分析。该新开发的方法用于小鼠肝样品中存在的LPL种类的综合分析。值得注意的是,该研究揭示了ob / ob小鼠肝脏中LPL种类的大量积累。综上所述,通过利用shot弹枪脂质组学的原理与新颖的样品制备策略相结合,可以通过既定方法确定生物样品中存在的LPL种类。我们认为,这一进展对于理解磷脂代谢的途径以及阐明LPL物质在信号转导和其他生物学功能中的作用是重要的和有用的。

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