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Ultra-performance liquid chromatographic assay coupled with two-dimensional separation for spectrometric determination of urinary S-phenylmercapturic acid

机译:超高效液相色谱分析与二维分离结合用于尿S-苯基巯基尿酸的光谱测定

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摘要

A gradient ultra-performance liquid chromatographic (UPLC) assay coupled with the two dimensional separation and diode array detection method was developed to determine S-phenylmercapturic acid (SPMA), a specific urinary metabolite of benzene. Gradient separation was performed on two C_(18) core-shell columns (2.6 and 1.7 μm, 50 x 2.1 mm i.d.) maintained at 40 and 20 °C. Among various solvents evaluated, dichloromethane which offered >85% recovery rates of both SPMA and d-benzylmercapturic acid (internal standard) was used for extraction. The yield of free-SPMA was maximized by hydrolyzing 200 μL of urine with 20 μL of 6 M HC1 prior to dichloromethane extraction. The limit of detection was 1 ug L~(-1)(s = 5) and the limit of quantification was 2 ug L~(-1). Using our method, a correlation of 0.99 was obtained with 10 specimens (range, 1.7 to 182 ug L~(-1)) from the German External Quality Assessment Scheme. Among the 75 non-occupational exposure individuals, 61 (81%) had SPMA levels below the LOQ. Among the 26 male petroleum workers, 5 who were exposed to <0.04 ppm of benzene were found to have SPMA levels below the LOQ. The geometric means obtained from the other 15 non-smokers and 6 smokers who were exposed to <0.5 ppm of benzene were 5.05 and 6.65 μg g~(-1) creatinine, respectively. The proposed method can be useful for occupational benzene exposure surveillance.
机译:结合二维分离和二极管阵列检测方法,开发了一种梯度超高效液相色谱(UPLC)测定法,以确定苯的一种特定的尿代谢产物S-苯基巯基乙酸(SPMA)。在保持在40和20°C的两个C_(18)核-壳色谱柱(2.6和1.7μm,内径50 x 2.1毫米)上进行梯度分离。在所评估的各种溶剂中,使用可提供SPMA和d-苄基巯基酸(内标)回收率均> 85%的二氯甲烷。在二氯甲烷萃取之前,先用20μL的6 M HCl水解200μL尿液,以使游离SPMA的产量最大化。检测限为1 ug L〜(-1)(s / n = 5),定量限为2 ug L〜(-1)。使用我们的方法,根据德国外部质量评估计划,从10个样本(范围为1.7至182 ug L〜(-1))获得了0.99的相关性。在75个非职业接触个体中,有61个(81%)的SPMA水平低于LOQ。在26名男性石油工人中,有5名暴露于<0.04 ppm苯的工人的SPMA水平低于LOQ。从其他15名非吸烟者和6名吸烟者中暴露于苯<0.5 ppm的几何平均值分别为5.05和6.65μgg〜(-1)肌酐。所提出的方法可用于职业苯暴露监测。

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