张续, 韩林学, 邱天, 林潇, 杨艳伟, 朱英, 胡小键. 改进的UPLC-MS/MS法测定尿中12种邻苯二甲酸酯代谢物[J]. 环境卫生学杂志, 2022, 12(1): 56-63. DOI: 10.13421/j.cnki.hjwsxzz.2022.01.011
    引用本文: 张续, 韩林学, 邱天, 林潇, 杨艳伟, 朱英, 胡小键. 改进的UPLC-MS/MS法测定尿中12种邻苯二甲酸酯代谢物[J]. 环境卫生学杂志, 2022, 12(1): 56-63. DOI: 10.13421/j.cnki.hjwsxzz.2022.01.011
    ZHANG Xu, HAN Lin-xue, QIU Tian, LIN Xiao, YANG Yan-wei, ZHU Ying, HU Xiao-jian. Determination of 12 metabolites of phthalates in human urine via modified UPLC-MS/MS[J]. Journal of Environmental Hygiene, 2022, 12(1): 56-63. DOI: 10.13421/j.cnki.hjwsxzz.2022.01.011
    Citation: ZHANG Xu, HAN Lin-xue, QIU Tian, LIN Xiao, YANG Yan-wei, ZHU Ying, HU Xiao-jian. Determination of 12 metabolites of phthalates in human urine via modified UPLC-MS/MS[J]. Journal of Environmental Hygiene, 2022, 12(1): 56-63. DOI: 10.13421/j.cnki.hjwsxzz.2022.01.011

    改进的UPLC-MS/MS法测定尿中12种邻苯二甲酸酯代谢物

    Determination of 12 metabolites of phthalates in human urine via modified UPLC-MS/MS

    • 摘要:
      目的 为实现尿液样本中邻苯二甲酸酯(PAEs)代谢物的批量测定,对已有方法的固相萃取过程进行优化改进,建立尿中12种PAEs代谢物的超高效液相色谱串联质谱(UPLC-MS/MS)分析方法。
      方法 尿样(2 mL)经β-葡萄糖醛酸酶水解、强阴离子固相萃取柱富集、净化、2%甲酸甲醇溶液洗脱后,省略氮吹浓缩程序,将洗脱液直接稀释进样。以0.1%乙酸溶液和0.1%乙酸乙腈溶液作为流动相进行梯度洗脱,以ACQUITY UPLC BEH Phenyl柱(100 mm×2.1 mm,1.7 μm)对目标化合物进行色谱分离。负离子电喷雾多反应监测模式下测定12种PAEs代谢物,内标法定量。
      结果 邻苯二甲酸单异丁酯(MiBP)在(1.5~200)ng/mL、邻苯二甲酸单正丁酯(MnBP)在(2.5~300)ng/mL,其余10种PAEs代谢物在(定量限~100)ng/mL范围内线性关系良好,相关系数均大于0.998。低、中、高三个浓度的加标回收率为86.4%~106%,日内精密度为1.2%~5.8%,日间精密度为5.9%~12%。以标准参考物质评估方法准确性,测定值与标准参考值的相对误差为2.0%~11%。
      结论 与原方法相比,改进后的UPLC-MS/MS法操作更简便,前处理时间更短,适用于尿中12种邻苯二甲酸酯代谢物的批量测定。

       

      Abstract:
      Objective To achieve high throughput determination of metabolites of phthalates in human urine, a simultaneous determination of 12 phthalates metabolites in human urine using ultra high performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) method was established by optimizing a solid phase extraction process of a previous study.
      Methods An aliquot of 2 mL human urine was hydrolyzed with β-glucuronidase, followed by enrichment and purification with a strong anion-exchange solid-phase extraction cartridge. The target analytes were eluted by 2% formic acid in methanol solution and directly injected for analysis without evaporation or reconstitution. The separation of target analytes was conducted on an ACQUITY UPLC BEH Phenyl column (100 mm×2.1 mm, 1.7 μm) with gradient elution by 0.1% acetic acid aqueous solution and 0.1% acetic acid in acetonitrile. Twelve phthalates metabolites were simultaneously determined under multiple reaction monitoring mode using negative electrospray ionization. The concentrations of 12 target analytes were quantified by isotope dilution analysis.
      Results The 12 phthalates metabolites showed good linearities in the range of 1.5-200 ng/mL for MiBP, 2.5-300 ng/mL for MnBP, or LOQ-100 ng/mL for other 10 target analytes, all with correlation coefficients of >0.998. The recoveries of 12 target analytes at low, moderate, and high spiked levels ranged 86.4%-106%. The intra-and inert-day precisions were 1.2%-5.8% and 5.9%-12%, respectively. Standard reference material was used to evaluate method accuracy. The relative error between the measured values and the reference values ranged from 2.0%-11%.
      Conclusion Compared with the previous method, UPLC-MS/MS method is superior in convenience and efficiency. It is suitable for high throughput determination of the 12 phthalates metabolites in human urine.

       

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