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LC-MS/MS and LC-UV Determination of Moniliformin by Adding Lanthanide Ions to the Mobile Phase

机译:添加镧系元素离子到流动相中进行LC-MS / MS和LC-UV测定莫尼福林

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摘要

An innovative chromatographic analysis was developed for the determination of moniliformin (MON). Because of its ionic nature, MON is weakly retained in reversed-phase chromatography and the separation may be tricky. Nevertheless, this technique is normally used either with the formation of ion pairs or employing specific RP columns for polar compounds, or combining anion exchange and hydrophobic interactions. Hydrophilic interaction chromatography (HILIC) was also used, but a non-negligible peak tailing was observed. Besides its ionic nature, MON is a di-ketone and di-ketones, mainly β-di-ketones, can easily form complexes with lanthanide ions. Then, in this work the addition of lanthanide ions to the mobile phase was investigated, aiming at improving peak shape and MON separation. La , Tb or Eu aqueous solutions were used as mobile phase and MON was chromatographed using a LC-NH column. The probable formation of coordination complexes lanthanide-MON in the HPLC mobile phase allowed to obtain a symmetrical peak shape and a satisfactory chromatographic separation by both mass spectrometry (MS/MS) and UV detection. Finally, a suitable extraction and purification method for MON determination in cereal samples was developed.
机译:开发了一种创新的色谱分析法,用于测定莫尼福林(MON)。由于其离子性质,MON在反相色谱中几乎没有保留,因此分离可能很棘手。然而,该技术通常用于形成离子对或将特定的RP色谱柱用于极性化合物,或将阴离子交换和疏水相互作用结合使用。还使用了亲水相互作用色谱(HILIC),但观察到峰拖尾不可忽略。 MON除了具有离子性质外,它还是一种二酮,二酮(主要是β-二酮)可以很容易地与镧系元素离子形成络合物。然后,在这项工作中,研究了向流动相中添加镧系元素离子,旨在改善峰形和MON分离。将La,Tb或Eu水溶液用作流动相,并使用LC-NH柱色谱分离MON。在HPLC流动相中可能形成配位化合物镧系元素MON,从而通过质谱(MS / MS)和UV检测获得了对称的峰形和令人满意的色谱分离。最后,开发了一种适用于谷物样品中MON测定的提取和纯化方法。

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