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Effect of Electrospray Ionization Source Parameters on Pharmaceuticals Analysis Using Quadrupole Time-of-Flight Mass Spectrometry

机译:电喷雾电离源参数对使用四极杆飞行时间质谱进行药物分析的影响

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摘要

The presence of pharmaceuticals in the environment has caused increasing concern. In the development of analytical method, selection of sensitive analytical instrument is also an important consideration. Among various analytical instruments, HPLC coupled with ESI based QTOF high resolution MS has recently emerged as a powerful analytical tool for the analysis of trace pharmaceuticals in environmental waters. This study evaluated the influence of ESI source parameters which include capillary voltage, nozzle voltage, nebulizer pressure, sheath gas temperature, sheath gas flow rate and drying gas temperature on the signal of pharmaceuticals. Cotinine, carbamazepine, atenolol, metoprolol, sotalol, ranitidine, norfloxacin, ciprofloxacin, acebutolol and ofloxacin were selected for this study. These compounds are common pharmaceutical pollutants in the environment. In general, most of the selected pharmaceuticals showed the highest response at 0 V of nozzle voltage, capillary voltage of 4500 V, sheath gas temperature and flow rate of 400 degrees C and 12 L/min and drying gas of 150 degrees C. For nebulizer pressure, no specific trend was observed. The peak area of cotinine, atenolol and sotalol was found to increase with increasing nebulizer pressure from 25 to 50 psig whereas, the signal of carbamazepine, metoprolol and acebutolol was found to decrease with increasing nebulizer pressure. The peak area of other pharmaceuticals was found to optimize at 30 or 35 psig. The result also indicated that applying nozzle voltage could largely reduce the peak area of pharmaceuticals while the peak area of selected pharmaceuticals can be significantly enhanced by increasing the sheath gas temperature.
机译:环境中药物的存在引起了越来越多的关注。在分析方法的发展中,敏感分析仪器的选择也是一个重要的考虑因素。在各种分析仪器中,HPLC与基于ESI的QTOF高分辨率质谱联用最近已成为一种强大的分析工具,可用于分析环境水中的痕量药物。这项研究评估了ESI源参数(包括毛细管电压,喷嘴电压,雾化器压力,鞘气温度,鞘气流速和干燥气体温度)对药物信号的影响。本研究选择了可替宁,卡马西平,阿替洛尔,美托洛尔,索他洛尔,雷尼替丁,诺氟沙星,环丙沙星,醋丁酚和氧氟沙星。这些化合物是环境中常见的药物污染物。通常,大多数选定的药物在喷嘴电压为0 V,毛细管电压为4500 V,鞘气温度,流速为400摄氏度和12升/分钟,干燥气体为150摄氏度时表现出最高的响应。压力,没有观察到具体趋势。发现可替宁,阿替洛尔和索他洛尔的峰面积随着雾化器压力从25到50 psig的增加而增加,而卡马西平,美托洛尔和醋丁酚的信号却随着雾化器压力的增加而降低。发现其他药物的峰面积最优化为30或35 psig。结果还表明,施加喷嘴电压可以大大降低药物的峰面积,而通过升高鞘气温度可以显着提高所选药物的峰面积。

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