首页> 美国卫生研究院文献>Springer Open Choice >Investigation into mercury bound to biothiols: structural identification using ESI–ion-trap MS and introduction of a method for their HPLC separation with simultaneous detection by ICP-MS and ESI-MS
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Investigation into mercury bound to biothiols: structural identification using ESI–ion-trap MS and introduction of a method for their HPLC separation with simultaneous detection by ICP-MS and ESI-MS

机译:研究与生物硫醇结合的汞:使用ESI-离子阱质谱仪进行结构鉴定并引入其HPLC分离方法同时通过ICP-MS和ESI-MS检测

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摘要

Mercury in plants or animal tissue is supposed to occur in the form of complexes formed with biologically relevant thiols (biothiols), rather than as free cation. We describe a technique for the separation and molecular identification of mercury and methylmercury complexes derived from their reactions with cysteine (Cys) and glutathione (GS): Hg(Cys)2, Hg(GS)2, MeHgCys, MeHgGS. Complexes were characterised by electrospray mass spectrometry (MS) equipped with an ion trap and the fragmentation pattern of MeHgCys was explained by using MP2 and B3LYP calculations, showing the importance of mercury–amine interactions in the gas phase. Chromatographic baseline separation was performed within 10 min with formic acid as the mobile phase on a reversed-phase column. Detection was done by online simultaneous coupling of ES-MS and inductively coupled plasma MS. When the mercury complexes were spiked in real samples (plant extracts), no perturbation of the separation and detection conditions was observed, suggesting that this method is capable of detecting mercury biothiol complexes in plants.>FigureSeparation and structural identification of Hg and MeHg biothiols
机译:据推测,植物或动物组织中的汞以与生物相关的硫醇(生物硫醇)形成的络合物的形式存在,而不是作为游离阳离子存在。我们描述了一种分离和分子鉴定汞和甲基汞配合物的技术,这些配合物是从它们与半胱氨酸(Cys)和谷胱甘肽(GS)的反应中衍生出来的:Hg(Cys)2,Hg(GS)2,MeHgCys,MeHgGS。配合物通过配备离子阱的电喷雾质谱(MS)进行表征,并通过MP2和B3LYP计算解释了MeHgCys的碎裂模式,表明了气相中汞-胺相互作用的重要性。色谱柱基线分离在10分钟内以甲酸为流动相在反相柱上进行。通过在线同时耦合ES-MS和电感耦合等离子体MS进行检测。当将汞络合物加标到实际样品(植物提取物)中时,没有观察到分离和检测条件的干扰,这表明该方法能够检测植物中的汞生物硫醇络合物。 --fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchored” f5-> > Figure <!-fig / graphic | fig / alternatives / graphic mode =“锚定的“ m1-> <!-标题a7-> Hg和MeHg生物硫醇的分离和结构鉴定

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