Miguens-Rodriguez Maria, Pickford Russell, Thomas-Oates Jane E, Pergantis Spiros A
School of Biological and Chemical Sciences, Birkbeck College, University of London, Gordon House, 29 Gordon Square, London WC1H 0PP, UK.
Rapid Commun Mass Spectrom. 2002;16(5):323-31. doi: 10.1002/rcm.578.
The development of analytical techniques suitable for providing structural information on a wide range of elemental species is a growing necessity. For arsenic speciation a variety of mass spectrometric techniques, mainly inductively coupled plasma mass spectrometry (ICP-MS) and electrospray tandem mass spectrometry (ES-MS/MS) coupled on-line with high-performance liquid chromatography (HPLC), are in use. In this paper we report the identification of arsenic species present in samples of marine origin (seaweed extracts) using ES ion trap mass spectrometry (IT) multistage mass spectrometry (MS(n)). Both reversed-phase and anion-exchange HPLC have been coupled on-line to ES-ITMS. Product ion scans with multiple stages of tandem MS (MS(n); n=2-4) were used to acquire diagnostic data for each arsenosugar. The spectra contain structurally characteristic fragment ions for each of the arsenosugars examined. In addition it was observed that upon successive stages of collision-induced dissociation (CID) a common product ion (m/z 237) was formed from all four arsenosugars examined. This product ion has the potential to be used as an indicator for the presence of dimethylated arsenosugars (dimethylarsinoylribosides). The HPLC/ES-ITMS(n) method developed allows the sensitive identification of arsenosugars present in crude seaweed extracts without the need for extended sample preparation. In fact, sample preparation requirements are identical to those typically employed for HPLC/ICP-MS analysis. Additionally, the resulting product ions are structurally diagnostic of the arsenosugars examined, and tandem mass spectra are reproducible and correspond well to those obtained using other low-energy CID techniques. As a result, the HPLC/ES-ITMS(n) approach minimises the potential for arsenic species misidentification and has great potential as a means of overcoming the need for characterised standards.
开发适用于提供多种元素种类结构信息的分析技术变得越来越必要。对于砷形态分析,目前使用了多种质谱技术,主要是电感耦合等离子体质谱(ICP-MS)和与高效液相色谱(HPLC)在线联用的电喷雾串联质谱(ES-MS/MS)。在本文中,我们报告了使用电喷雾离子阱质谱(IT)多级质谱(MS(n))鉴定海洋来源样品(海藻提取物)中存在的砷形态。反相和阴离子交换HPLC均已与ES-ITMS在线联用。使用多级串联质谱(MS(n);n = 2 - 4)的产物离子扫描来获取每种砷糖的诊断数据。光谱包含所检测的每种砷糖的结构特征性碎片离子。此外,观察到在连续的碰撞诱导解离(CID)阶段,所检测的所有四种砷糖都形成了一个共同的产物离子(m/z 237)。该产物离子有可能用作二甲基化砷糖(二甲基砷酰核糖苷)存在的指示剂。所开发的HPLC/ES-ITMS(n)方法能够灵敏地鉴定粗海藻提取物中存在的砷糖,而无需进行长时间的样品制备。实际上,样品制备要求与HPLC/ICP-MS分析通常采用的要求相同。此外,所得产物离子在结构上可诊断所检测的砷糖,串联质谱具有可重复性,并且与使用其他低能CID技术获得的结果非常吻合。因此,HPLC/ES-ITMS(n)方法将砷形态误识别的可能性降至最低,并且作为一种克服对特征标准品需求的手段具有很大潜力。
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