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质谱分析氧化和氯化脂质及其与信号转导的相关性。

Analysis of oxidized and chlorinated lipids by mass spectrometry and relevance to signalling.

机构信息

School of Life and Health Sciences, Aston University, Aston Triangle, Birmingham B4 7ET, UK.

出版信息

Biochem Soc Trans. 2011 Oct;39(5):1233-9. doi: 10.1042/BST0391233.

Abstract

Oxidized and chlorinated phospholipids are generated under inflammatory conditions and are increasingly understood to play important roles in diseases involving oxidative stress. MS is a sensitive and informative technique for monitoring phospholipid oxidation that can provide structural information and simultaneously detect a wide variety of oxidation products, including chain-shortened and -chlorinated phospholipids. MSn technologies involve fragmentation of the compounds to yield diagnostic fragment ions and thus assist in identification. Advanced methods such as neutral loss and precursor ion scanning can facilitate the analysis of specific oxidation products in complex biological samples. This is essential for determining the contributions of different phospholipid oxidation products in disease. While many pro-inflammatory signalling effects of oxPLs (oxidized phospholipids) have been reported, it has more recently become clear that they can also have anti-inflammatory effects in conditions such as infection and endotoxaemia. In contrast with free radical-generated oxPLs, the signalling effects of chlorinated lipids are much less well understood, but they appear to demonstrate mainly pro-inflammatory effects. Specific analysis of oxidized and chlorinated lipids and the determination of their molecular effects are crucial to understanding their role in disease pathology.

摘要

氧化磷脂和氯化磷脂在炎症条件下产生,越来越多的研究表明它们在涉及氧化应激的疾病中发挥着重要作用。MS 是一种监测磷脂氧化的灵敏且信息量丰富的技术,它可以提供结构信息,并同时检测多种氧化产物,包括链缩短和氯化磷脂。MSn 技术涉及化合物的碎裂,以产生诊断性碎片离子,从而有助于鉴定。中性丢失和前体离子扫描等先进方法可以促进复杂生物样品中特定氧化产物的分析。这对于确定不同磷脂氧化产物在疾病中的贡献至关重要。虽然已经报道了 oxPL(氧化磷脂)的许多促炎信号作用,但最近越来越清楚的是,它们在感染和内毒素血症等情况下也具有抗炎作用。与自由基生成的 oxPL 相比,氯化脂质的信号作用知之甚少,但它们似乎主要表现出促炎作用。对氧化和氯化脂质的特异性分析以及确定它们的分子作用对于理解它们在疾病发病机制中的作用至关重要。

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