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Lipid mediator informatics-lipidomics: Novel pathways in mapping resolution

机译:脂质介体信息学-脂质组学:映射分辨率的新途径

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摘要

Lipidomics, the systematic decoding of lipid-based information in biosystems, is composed of identifying and profiling lipids and lipid-derived mediators. As currently practiced, lipidomics can be subdivided into architecture/ membrane lipidomics and mediator lipidomics. The mapping of structural components and their relation to cell activation as well as generation of potent lipid mediators and networks involves a mass spectrometry-computational approach so that interrelationships and complex mediator networks important for cell homeostasis can be appreciated. Cell membranes are composed of a bilayer that contains phospholipids, fatty acids, integral membrane proteins, membrane-associated proteins, sphingolipids, and so on. The membrane composition of many cell types has been established. The components' organization and effect on cell function remains to be established, however, and is a quest for lipidomics. Here, we review liquid chromatography tandem mass spectrometry-based lipidomic analyses to address bioactive lipid mediators in signaling pathways and the roles of lipid-derived mediators in resolution of inflammation.
机译:脂质组学是对生物系统中基于脂质的信息进行的系统解码,由识别和分析脂质及脂质衍生的介体组成。按照目前的实践,脂质组学可以细分为结构/膜脂质组学和介体脂质组学。结构成分的映射及其与细胞激活的关系以及有效脂质介体和网络的生成涉及质谱计算方法,因此可以理解对于细胞稳态重要的相互关系和复杂的介体网络。细胞膜由双层组成,双层包含磷脂,脂肪酸,整合膜蛋白,膜相关蛋白,鞘脂等。已经建立了许多细胞类型的膜组成。组件的组织和对细胞功能的影响尚待确定,但这是对脂质组学的追求。在这里,我们审查基于液相色谱串联质谱的脂质组学分析,以解决信号通路中的生物活性脂质介体和脂质来源的介体在炎症消退中的作用。

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