Centre for Analytical Science, Department of Chemistry, Loughborough University , Loughborough, Leicestershire LE11 3TU, United Kingdom.
Drug Control Centre, King's College London , London SE1 9NH, United Kingdom.
Anal Chem. 2017 Jul 18;89(14):7431-7437. doi: 10.1021/acs.analchem.7b00940. Epub 2017 Jun 30.
The combination of field asymmetric waveform ion mobility spectrometry with liquid chromatography-mass spectrometry (LC-FAIMS-MS) has been developed for the analysis of glucuronide and sulfate metabolites of seven anabolic-androgenic steroids in urine. Separation by FAIMS-MS was investigated in positive ion mode for selected cationic adducts (H, NH, Na, K, and Cs). LC-FAIMS-MS analysis of the doubly sodiated adducts ([M + 2Na - H]) of isobaric and coeluting steroid metabolites allowed their rapid (8 min) qualitative and quantitative determination in spiked urine using hydrophilic interaction liquid chromatography prior to FAIMS-MS separation, with discrimination >95% achieved between the steroids investigated. A quantitative evaluation of the LC-FAIMS-MS method was performed giving limits of detection in the range 1-6 ng mL, limits of quantification in the range 3-20 ng mL, with reproducibility (%RSD < 10%; n = 6) and linearity (R > 0.99). The LC-FAIMS-MS method demonstrates increases in signal-to-noise ratios for the doubly sodiated steroid metabolites in unspiked urine (>250%) by the reduction of isobaric interferences from the matrix. An alternative or additional tool for identification of the steroid metabolites is based on the observations of different patterns of sodium acetate clusters that are characteristic for each metabolite.
已开发出用于分析尿液中七种合成代谢雄性类固醇葡萄糖醛酸和硫酸盐代谢物的场非对称波形离子淌度谱与液相色谱-质谱联用(LC-FAIMS-MS)方法。在正离子模式下,针对选择的阳离子加合物(H、NH、Na、K 和 Cs)对 FAIMS-MS 进行了分离。采用亲水相互作用液相色谱法在 FAIMS-MS 分离前对加合氘化[M+2Na-H]的同重和共洗脱类固醇代谢物进行 LC-FAIMS-MS 分析,可快速(8 分钟)定性和定量测定尿液中的加标类固醇代谢物,实现了 >95%的类固醇之间的区分。对 LC-FAIMS-MS 方法进行了定量评估,检测限范围为 1-6 ng/mL,定量限范围为 3-20 ng/mL,重现性(%RSD < 10%;n = 6)和线性(R > 0.99)良好。LC-FAIMS-MS 方法通过减少基质中同重干扰,使未加标尿液中双氘化类固醇代谢物的信噪比提高了 >250%。基于对每个代谢物特征性的不同乙酸钠簇图案的观察,为鉴定类固醇代谢物提供了另一种或附加工具。