首页> 外文期刊>Therapeutic Drug Monitoring >Gas chromatographic/mass spectrometric identification and quantification of aniline after extraction from serum and derivatization with 4-carbethoxyhexafluorobutyryl chloride, a new derivative.
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Gas chromatographic/mass spectrometric identification and quantification of aniline after extraction from serum and derivatization with 4-carbethoxyhexafluorobutyryl chloride, a new derivative.

机译:从血清中提取并用新衍生物4-乙氧基六氟丁酰氯衍生化后,气相色谱/质谱法鉴定和定量苯胺。

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Aniline, widely used as an intermediate in the synthesis of dye, is also used in the manufacture of pharmaceuticals, photographic developers, shoe polish, and other common substances. Exposure to aniline is toxic because it produces methemoglobin. Aniline levels are usually not measured in serum; in humans, blood methemoglobin levels are often measured as an index of exposure to aniline. In this article, we describe a method for the identification and the quantification of aniline by gas chromatography/mass spectrometry (GC/MS) after its extraction from human serum and derivatization with 4-carbethoxyhexafluorobutyryl chloride. Aniline, as well as the internal standard N-methyl aniline, was extracted from alkaline serum using chloroform. Aniline and the internal standard were derivatized with 50 microL of 4-carbethoxyhexafluorobutyryl chloride. After evaporating the excess derivatizing reagent, the residue was reconstituted in 50 microL of ethyl acetate and injected into the GC/MS. A positive identification of derivatized aniline can be made from the strong molecular ion at m/z 343. Similarly, derivatized internal standard showed a strong molecular ion at m/z 357. The within-run and between-run precisions of the assay were 3.8% and 5.8%, respectively, at an aniline concentration of 5 mg/L. The assay was linear for serum aniline concentrations of 0.5 mg/L to 25.0 mg/L. The detection limit was 0.1 mg/L. The assay was not affected by lipemia, hemolysis, or high bilirubin concentration in serum, and the assay was applicable to whole blood. We also fed mice (C57bl/6) with various concentrations of aniline and measured methemoglobin and blood concentrations of aniline. The methemoglobin percentage and aniline concentrations in blood increased with increasing aniline doses.
机译:苯胺广泛用作染料合成的中间体,也用于制造药物,照相显影剂,鞋油和其他常见物质。接触苯胺是有毒的,因为它会产生高铁血红蛋白。苯胺水平通常不能在血清中测定。在人类中,血液高铁血红蛋白水平通常作为苯胺暴露指数来衡量。在本文中,我们描述了一种从人血清中提取苯胺并用4-carbethoxyhexafluorobutyryl chloride衍生化后通过气相色谱/质谱(GC / MS)鉴定和定量苯胺的方法。使用氯仿从碱性血清中提取苯胺以及内标N-甲基苯胺。苯胺和内标物用50微升4-乙氧基六氟丁酰氯衍生化。蒸发过量的衍生试剂后,将残留物在50微升乙酸乙酯中重建,然后注入GC / MS中。可以通过m / z 343处的强分子离子对衍生化的苯胺进行阳性鉴定。类似地,衍生化的内标物在m / z 357处显示出强分子离子。分析的运行内和运行间精密度为3.8。苯胺浓度为5 mg / L时分别为5%和5.8%。对于血清苯胺浓度为0.5 mg / L至25.0 mg / L,该测定呈线性。检出限为0.1 mg / L。该测定不受血脂,溶血或血清中高胆红素浓度的影响,该测定适用于全血。我们还用各种浓度的苯胺喂养了小鼠(C57bl / 6),并测量了高铁血红蛋白和苯胺的血液浓度。血液中的高铁血红蛋白百分比和苯胺浓度随苯胺剂量的增加而增加。

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