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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Simultaneous detection of five one-carbon metabolites in plasma using stable isotope dilution liquid chromatography tandem mass spectrometry
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Simultaneous detection of five one-carbon metabolites in plasma using stable isotope dilution liquid chromatography tandem mass spectrometry

机译:稳定同位素稀释液相色谱串联质谱法同时检测血浆中五种一碳代谢物

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Disturbance in one-carbon (1-C) cycle occurs due to nutritional deficiencies (vitamin B12/folate) or specific genetic polymorphisms. This leads to altered levels of key 1-C metabolites such as SAM (s-adenosyl methionine), SAH (s-adenosyl homocysteine), methionine, homocysteine and MMA (methyl malonic acid). These 1-C metabolites are determinants of cellular methylation potential and epigenetic modifications of DNA which impairs metabolic pathways in several pathological diseases and developmental programming. Though methods were able to measure these analytes only independently, none of the methods detect simultaneously. Therefore we developed a method to measure these five 1-C metabolites in a single run using liquid chromatography tandem mass spectrometry (LC-MS/MS). We used stable isotopes dilution LC-MS/MS to measure the 1-C metabolites in human plasma. Blood samples were collected from pregnant women (n =30) at early gestation in the ongoing, multicentre, prospective PRiDE study. Linearity exhibited across the calibration range for all the analytes with the limit of detection (LOD) of 1.005 nmol/1 for SAM, 0.081 nmol/1 for SAH, 0.002 Ilmol/1 for methionine, 0.046 mu mol/1 for homocysteine and 3.920 nmol/1 for MMA. The average recovery for SAM was 108%, SAH-110%, methionine-97%, homocysteine-91% and MMA-102%. The inter-assay CV for SAM was 7.3, SAH-5.6%, methionine-3.5%, homocysteine-7.0% and MMA-4.0%. The intra-assay CV for SAM was 8.7%, SAH-4.7%, methionine-5.4%, homocysteine-8.1% and MMA-6.1%. Pregnant women at early gestation with low B12 levels had significantly higher homocysteine, MMA, lower levels of methionine, SAM and SAM:SAH ratio and higher triglycerides. We developed a simple and rapid method to simultaneously quantify 1-C metabolites such as SAM, SAH, methionine, homocysteine and MMA in plasma by stable isotope dilution LC-MS/MS which would be useful to elucidate the epigenetic mechanisms related in the gene-nutrient interactions. (C) 2016 Elsevier B.V. All rights reserved.
机译:一碳(1-C)循环紊乱是由于营养缺乏(维生素B12 /叶酸)或特定的遗传多态性引起的。这导致关键的1-C代谢物(例如SAM(s-腺苷甲硫氨酸),SAH(s-腺苷高半胱氨酸),蛋氨酸,高半胱氨酸和MMA(甲基丙二酸)的水平发生变化。这些1-C代谢物是细胞甲基化潜力和DNA的表观遗传修饰的决定因素,这些损害了几种病理疾病和发育程序中的代谢途径。尽管方法只能单独测量这些分析物,但没有一种方法可以同时检测到。因此,我们开发了一种使用液相色谱串联质谱(LC-MS / MS)在一次运行中测量这五个1-C代谢物的方法。我们使用稳定的同位素稀释液LC-MS / MS测量人血浆中的1-C代谢物。在正在进行的多中心前瞻性PRiDE研究中,从妊娠早期的孕妇(n = 30)中采集了血液样本。所有分析物在整个校准范围内均表现出线性,SAM的检出限(LOD)为1.005 nmol / 1,SAH为0.081 nmol / 1,蛋氨酸为0.002 Ilmol / 1,同型半胱氨酸为0.046μmol / 1,3.920 nmol MMA的/ 1。 SAM的平均回收率为108%,SAH-110%,蛋氨酸为97%,高半胱氨酸为91%和MMA-102%。 SAM的批间CV为7.3,SAH-5.6%,蛋氨酸-3.5%,高半胱氨酸-7.0%和MMA-4.0%。 SAM的测定内CV为8.7%,SAH-4.7%,蛋氨酸-5.4%,高半胱氨酸-8.1%和MMA-6.1%。孕妇在早期妊娠时B12含量低,其同型半胱氨酸,MMA含量,蛋氨酸,SAM和SAM:SAH比值较低,甘油三酸酯含量较高。我们开发了一种简单而快速的方法,通过稳定的同位素稀释液LC-MS / MS同时定量血浆中的1-C代谢物(例如SAM,SAH,蛋氨酸,高半胱氨酸和MMA),这对于阐明与该基因相关的表观遗传机制很有用。营养相互作用。 (C)2016 Elsevier B.V.保留所有权利。

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