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Simultaneous detection of lysine metabolites by a single LC–MS/MS method: monitoring lysine degradation in mouse plasma

机译:通过单个LC-MS / MS方法同时检测赖氨酸代谢物:监测小鼠血浆中赖氨酸的降解

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摘要

Detection and quantification of lysine degradation metabolites in plasma is necessary for the diagnosis and follow-up of diseases such as pyridoxine-dependent epilepsy. The principal metabolites involved in the disease are related to the first steps of lysine oxidation, either through the saccharopine or the pipecolate pathways. Currently, there are three different analytical methods used to assess the content of these metabolites in urine and plasma, but they require different sample preparations and analytical equipment. Here, we describe a protocol that calls for a simple sample preparation and uses liquid chromatography tandem mass spectrometry (LC–MS/MS) that allows simultaneous detection and quantification of underivatized l-saccharopine, l-aminoadipic acid, l-pipecolic acid, piperideine-6-carboxylate, l-glutamic acid, and pyridoxal-5-phosphate in plasma samples. To validate the method we analyzed the time course degradation after intraperitoneal injection of l-lysine in C57BL/6/J mice. We observed that the degradation of lysine through the saccharopine pathway reached a maximum within the first 2 h. At this time point there was an increase in the levels of the metabolites saccharopine, aminoadipic acid, and pipecolic acid by 3-, 24- and 3.4-fold, respectively, compared to time zero levels. These metabolites returned to basal levels after 4–6 h. In conclusion, we have developed a LC–MS/MS approach, which allows simultaneous analysis of lysine degradation metabolites without the need for derivatization.Electronic supplementary materialThe online version of this article (doi:10.1186/s40064-016-1809-1) contains supplementary material, which is available to authorized users.
机译:对血浆中赖氨酸降解代谢产物的检测和定量对于诊断和随访诸如吡-醇依赖性癫痫等疾病是必要的。该疾病涉及的主要代谢物与赖氨酸氧化的第一步有关,要么通过糖精碱,要么通过pipecolate途径。当前,有三种不同的分析方法可用于评估尿液和血浆中这些代谢物的含量,但它们需要不同的样品制备和分析设备。在这里,我们描述了一种要求简单样品制备并使用液相色谱串联质谱(LC-MS / MS)的协议,该协议允许同时检测和定量衍生未衍生的L-糖精,L-氨基己二酸,L-哌酸,哌啶子碱血浆样品中的-6-羧酸盐,1-谷氨酸和5-磷酸吡x醛为了验证该方法,我们分析了在C57BL / 6 / J小鼠腹膜内注射l-赖氨酸后的时间进程降解。我们观察到,通过saccharopine途径赖氨酸的降解在前2小时内达到最大。在这个时间点,与零时相比,糖精,氨基己二酸和胡椒酸的代谢物水平分别增加了3倍,24倍和3.4倍。这些代谢物在4-6小时后恢复到基础水平。总之,我们已经开发出一种LC-MS / MS方法,无需进行衍生化,即可同时分析赖氨酸降解代谢产物。电子补充材料本文的在线版本(doi:10.1186 / s40064-016-1809-1)包含补充材料,授权用户可以使用。

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