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Capillary Electrochromatography Coupled to Atmospheric Pressure Photoionization Mass Spectrometry for Methylated Benzo[a]pyrene Isomers

机译:毛细管电色谱联用大气压光电离质谱分析甲基化的苯并[a] re异构体

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Benzo[a]pyrene, one of the most carcinogenic PAHs, has 12 monomethylated positional isomers (MBAPs). A strong correlation between the carcinogenicity of these isomers and methyl substitution has been reported. In this study, on-line coupling of capillary electrochromatography (CEC) and atmospheric pressure photoionization mass spectrometry (APPI-MS) provides a unique solution to highly selective separation and sensitive detection of MBAP isomers. The studies indicated that APPI provides significantly better sensitivity compared to electrospray ionization and atmospheric pressure chemical ionization modes of MS. A systematic investigation of APPI-MS detection parameters and CEC separation is established. First, several sheath liquid parameters (including type and concentration of volatile buffers, type and content of organic modifiers, use of dopants and inorganic/organic additives, and sheath liquid flow rate) and APPI-MS spray chamber parameters (capillary voltage, vaporizer temperature, nebulizer pressure) were found to have effects on detection sensitivity as well as the profile of mass spectrum. For example, when ammonium acetate was replaced with acetic acid in the sheath liquid, the MS signal was enhanced as much as 90percent and the formation of ammonia adduct was effectively suppressed. Next, the separation of MBAP isomers was conducted on internal tapered columns packed with polymeric C_(18) stationary phase. With the use of a mobile phase consisting of slightly higher acetonitrile content (90percent,v/v) and a small amount of tropylium ion, the analysis times were significantly shortened by 20 min without compromising the resolutions between the isomers. Finally, quantitative aspects of the CEC-APPI-MS method were demonstrated using 7-MBAP as the internal standard. The calibration curves of three of the most carcinogenic isomers, namely, 1-M-BAP, 3-MBAP, and 11-MBAP, showed good linearity in the range of 2.5-50 (mu)g/mL with a limit of detection at 400 ng/mL.
机译:苯并[a] py是最具致癌性的PAH之一,具有12个单甲基化的位置异构体(MBAP)。据报道,这些异构体的致癌性与甲基取代之间存在很强的相关性。在这项研究中,毛细管电色谱(CEC)和大气压光电离质谱(APPI-MS)的在线耦合为MBAP异构体的高选择性分离和灵敏检测提供了独特的解决方案。研究表明,与MS的电喷雾电离和大气压化学电离模式相比,APPI可提供更好的灵敏度。建立了APPI-MS检测参数和CEC分离的系统研究。首先,几个鞘液参数(包括挥发性缓冲剂的类型和浓度,有机改性剂的类型和含量,掺杂剂和无机/有机添加剂的使用以及鞘液的流速)和APPI-MS喷雾室参数(毛细管电压,蒸发器温度) (雾化器压力)对检测灵敏度以及质谱图有影响。例如,在鞘液中用乙酸代替乙酸铵时,MS信号增强了90%,有效地抑制了氨加合物的形成。接下来,在填充有聚合物C_(18)固定相的内部锥形柱上进行MBAP异构体的分离。使用由较高乙腈含量(90%,v / v)和少量托乙铵离子组成的流动相,可在不影响异构体之间分离度的前提下,将分析时间显着缩短20分钟。最后,以7-MBAP作为内标证明了CEC-APPI-MS方法的定量方面。三种最具致癌性的异构体,即1-M-BAP,3-MBAP和11-MBAP的校准曲线在2.5-50μg/ mL的范围内显示出良好的线性,检测限为400 ng / mL。

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