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Characterizing and compensating for matrix effects using atmospheric pressure chemical ionization liquid chromatography - Tandem mass spectrometry: Analysis of neutral pharmaceuticals in municipal wastewater

机译:使用大气压化学电离液相色谱法表征和补偿基质效应-串联质谱法:城市废水中的中性药物分析

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Matrix effects are a great challenge for the quantitative analysis of environmental samples by liquid chromatography-tandem mass spectrometry (LC-MS/MS). Signal suppression or enhancement can compromise the accuracy of analytical results. While matxix effects have been relatively well studied for applications of LC-MS/MS instrumentation with electrospray ionization, there have been relatively few studies to evaluate matrix effects when using atmospheric pressure chemical ionization (APCI) as the ion source. In this study, we determined the effects of sample matrix on the analysis of six neutral pharmaceuticals (i.e., caffeine, cotinine, carbamazepine and its major metabolite, carbamazepine-10,11-dihydrodiol, trimethoprim, and fluoxetine) in samples of municipal wastewater using LC-APCI-MS/MS and evaluated whether isotope-labeled internal standards can be used to compensate for matrix effects. The matrix effects were measured using postextraction spikes and postcolumn direct infusion, respectively. The results showed that the matrix in the extracts prepared from municipal wastewater enhanced the signals for four of the six analytes when using an APCI source. Without correction for signal enhancement, apparent recoveries of the analytes from wastewater samples were overestimated to levels as high as 178% of the spiked amount. Isotope-labeled compounds corrected for these overestimates that occurred as a result of interferences from the sample matrix.
机译:对于液相色谱-串联质谱法(LC-MS / MS)定量分析环境样品而言,基质效应是一个巨大的挑战。信号抑制或增强会损害分析结果的准确性。虽然在使用电喷雾电离的LC-MS / MS仪器应用中对matxix效应进行了比较充分的研究,但是当使用大气压化学电离(APCI)作为离子源时,评估基质效应的研究相对较少。在这项研究中,我们确定了样品基质对市政废水样品中六种中性药物(即咖啡因,可替宁,卡马西平及其主要代谢物,卡马西平-10,11-二氢二醇,甲氧苄啶和氟西汀)的分析效果LC-APCI-MS / MS并评估了同位素标记的内标是否可用于补偿基质效应。分别使用提取后加标和柱后直接输注测量基质效应。结果表明,当使用APCI来源时,从城市废水中提取的基质中的六种分析物中有四种增强了信号。如果不对信号增强进行校正,则高估了废水样品中分析物的表观回收率,其水平高达加标量的178%。同位素标记的化合物纠正了由于样品基质干扰而导致的这些高估。

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