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An LC-MS/MS method to quantify acylcarnitine species including isomeric and odd-numbered forms in plasma and tissues

机译:LC-MS / MS方法定量血浆和组织中的酰基肉碱种类包括异构形式和奇数形式

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摘要

Acylcarnitines are intermediates of fatty acid and amino acid oxidation found in tissues and body fluids. They are important diagnostic markers for inherited diseases of peroxisomal and mitochondrial oxidation processes and were recently described as biomarkers of complex diseases like the metabolic syndrome. Quantification of acylcarnitine species can become challenging because various species occur as isomers and/or have very low concentrations. Here we describe a new LC-MS/MS method for quantification of 56 acylcarnitine species with acyl-chain lengths from C2 to C18. Our method includes amino acid-derived positional isomers, like methacrylyl-carnitine (2-M-C3:1-CN) and crotonyl-carnitine (C4:1-CN), and odd-numbered carbon species, like pentadecanoyl-carnitine (C15:0-CN) and heptadecanoyl-carnitine (C17:0-CN), occurring at very low concentrations in plasma and tissues. Method validation in plasma and liver samples showed high sensitivity and excellent accuracy and precision. In an application to samples from streptozotocin-treated diabetic mice, we identified significantly increased concentrations of acylcarnitines derived from branched-chain amino acid degradation and of odd-numbered straight-chain species, recently proposed as potential biomarkers for the metabolic syndrome. In conclusion, the LC-MS/MS method presented here allows robust quantification of isomeric acylcarnitine species and extends the palette of acylcarnitines with diagnostic potential derived from fatty acid and amino acid metabolism.
机译:酰基肉碱是在组织和体液中发现的脂肪酸和氨基酸氧化的中间体。它们是过氧化物酶体和线粒体氧化过程遗传疾病的重要诊断标志物,最近被描述为诸如代谢综合征等复杂疾病的生物标志物。酰基肉碱物种的定量可能变得具有挑战性,因为各种物种以异构体形式出现和/或浓度很低。在这里,我们描述了一种新的LC-MS / MS方法,用于定量从C2到C18的酰基链长度的56种酰基肉碱。我们的方法包括氨基酸衍生的位置异构体,如甲基丙烯酰基肉碱(2-M-C3:1-CN)和巴豆酰基肉碱(C4:1-CN),以及奇数碳物种,如十五烷酰基肉碱(C15 :0-CN)和十七碳酰肉碱(C17:0-CN),它们在血浆和组织中的浓度非常低。血浆和肝样品中的方法验证显示出高灵敏度,极好的准确性和精密度。在对链脲佐菌素治疗的糖尿病小鼠的样品的应用中,我们发现衍生自支链氨基酸降解和奇数直链物种的酰基肉碱的浓度显着增加,最近被提议作为代谢综合征的潜在生物标记。总之,本文介绍的LC-MS / MS方法可对酰基肉碱异构体进行可靠的定量分析,并扩展了酰基肉碱的调色板,具有从脂肪酸和氨基酸代谢中获得的诊断潜力。

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