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Quantification of Fatty Acid Oxidation Products Using On-line High Performance Liquid Chromatography Tandem Mass Spectrometry

机译:脂肪酸氧化产物的定量使用在线高效液相色谱串联质谱法

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摘要

Oxidized fatty acids formed via lipid peroxidation are implicated in pathological processes such as inflammation and atherosclerosis. A number of methods may be used to detect specific oxidized fatty acids containing a single or multiple combinations of epoxide, hydroxyl, ketone and hydroperoxide moieties on varying carbon chain lengths from C8 up to C30. Some of these methods are nonspecific and their use in biological systems is fraught with difficulty. Measures of specific-oxidized fatty acid derivatives help in identifying oxidation pathways in pathological processes. We used liquid chromatography coupled with electrospray ionization tandem mass spectrometry (LC-MS/MS) as efficient, selective and sensitive methods for identifying and analyzing multiple specific fatty acid peroxidation products in human plasma and other biological matrices. We then distilled the essential components of a number of these analyses to provide an efficient protocol by which fatty acid oxidation products and their parent compounds can be determined. In this protocol, addition of synthetic internal standard to the sample, followed by base hydrolysis at elevated temperature, and liquid-liquid phase sample extraction with lighter than water solvents facilitates isolation of the oxidized fatty acid species. These species can be identified and accurately quantified using stable isotope dilution and multiple reaction monitoring. Use of a coupled multiplexed gradient HPLC system on the front end enables high-throughput chromatography and more efficient use of mass spectrometer time.
机译:通过脂质过氧化作用形成的氧化脂肪酸与病理过程有关,例如炎症和动脉粥样硬化。可以使用多种方法来检测特定的氧化脂肪酸,这些脂肪酸包含从C8到C30的不同碳链长度的环氧化物,羟基,酮和氢过氧化物部分的单个或多个组合。这些方法中的一些是非特异性的,并且在生物系统中的使用困难重重。特定氧化脂肪酸衍生物的措施有助于确定病理过程中的氧化途径。我们使用液相色谱结合电喷雾电离串联质谱(LC-MS / MS)作为鉴定,分析人血浆和其他生物基质中多种特定脂肪酸过氧化产物的有效,选择性和灵敏方法。然后,我们对许多这些分析的基本成分进行了蒸馏,以提供一种可确定脂肪酸氧化产物及其母体化合物的有效方案。在该方案中,向样品中添加合成内标物,然后在高温下进行碱水解,并使用比水溶剂轻的液-液相样品进行萃取,有助于分离氧化的脂肪酸。使用稳定的同位素稀释和多反应监测,可以识别并准确定量这些种类。在前端使用耦合的多重梯度HPLC系统可实现高通量色谱分析,并更有效地利用质谱仪的时间。

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