首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >A novel mass spectrometry-based method for simultaneous determination of asymmetric and symmetric dimethylarginine, L-arginine and L-citrulline optimized for LC-MS-TOF and LC-MS/MS
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A novel mass spectrometry-based method for simultaneous determination of asymmetric and symmetric dimethylarginine, L-arginine and L-citrulline optimized for LC-MS-TOF and LC-MS/MS

机译:一种新型质谱基于基于质量光谱法,用于同时测定用于LC-MS-TOF和LC-MS / MS的不对称和对称二甲基碱,L-精氨酸和L-瓜氨酸的方法

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摘要

Nitric oxide (NO) is a regulatory molecule involved in many biological processes. NO is produced by nitric oxide synthase by conversion of l-arginine to l-citrulline. l-Arginine methylated derivatives, asymmetric and symmetric dimethylarginines (asymmetric dimethylarginine, ADMA, and symmetric dimethylarginine, SDMA), regulate l-arginine availability and the activity of nitric oxide synthase. As such, they have been frequently investigated as potential biomarkers in pathologies associated with dysfunctions in NO synthesis. Here, we present a new multistep analytical methodology based on liquid chromatography combined with mass spectrometry for the accurate identification of L-arginine, L-citrulline, ADMA and SDMA. Compounds are measured as stable 2,3,4,5,6-pentafluorobenzoyl chloride derivatives, which allows for simultaneous analysis of all compounds through chromatographic separation of ADMA and SDMA using a reverse-phase column. Serum aliquots (100L) were spiked with isotope-labeled internal standards and sodium carbonate buffer. The derivatization process was carried out at 25 degrees C for 10 minu using pentafluorobenzoyl chloride as derivatization reagent. Calibration demonstrated good linearity (R-2=0.9966-0.9986) for all derivatized compounds. Good accuracy (94.67-99.91%) and precision (1.92-11.8%) were observed for the quality control samples. The applicability of the method was evaluated in a cohort of angiological patients and healthy volunteers. The method discerned significantly lower L-arginine and L-citrulline in angiologic patients. This robust and fast LC-ESI-MS method may be a useful tool in quantitative analysis of L-arginine, ADMA, SDMA and L-citrulline.
机译:一氧化氮(NO)是涉及许多生物过程的调节分子。通过将L-精氨酸转化为L-瓜氨酸,通过一氧化氮合酶制备。 L-精氨酸甲基化衍生物,不对称和对称二甲基碱(非对称二甲基碱,ADMA和对称二甲基碱,SDMA),调节L-精氨酸可用性和一氧化氮合酶的活性。因此,它们经常被研究为与无合成功能障碍相关的病理学中的潜在生物标志物。在这里,我们基于液相色谱法与质谱结合的新的多步分析方法,以准确鉴定L-精氨酸,L-瓜氨酸,ADMA和SDMA。将化合物作为稳定的2,3,4,5,6-五氟苯甲酰衍生物测量,其允许通过使用反相柱通过ADMA和SDMA的色谱分离同时分析所有化合物。用同位素标记的内标和碳酸钠缓冲液掺入血清等分试样(100L)。使用五氟苯甲酰氯作为衍生化试剂,在25℃下进行衍生化方法10 minu进行。校准显示所有衍生化合物的良好线性(R-2 = 0.9966-0.9986)。对于质量控制样品,观察到良好的准确度(94.67-99.91%)和精度(1.92-11.8%)。该方法的适用性是在血管生理患者和健康志愿者的群体中评估的。该方法在血管系统患者中辨别出显着降低的L-精氨酸和L-瓜氨酸。这种稳健和快速的LC-ESI-MS方法可以是L-精氨酸,ADMA,SDMA和L-瓜氨酸的定量分析中的有用工具。

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