Touber M E, van Engelen M C, Georgakopoulus C, van Rhijn J A, Nielen M W F
RIKILT-Institute of Food Safety, P.O. Box 230, Wageningen, 6700 AE, The Netherlands.
Anal Chim Acta. 2007 Mar 14;586(1-2):137-46. doi: 10.1016/j.aca.2006.09.058. Epub 2006 Oct 5.
A liquid chromatography/time-of-flight mass spectrometry (LC/TOFMS) method was developed using the latest high-resolution LC column technology, the ultra performance liquid chromatography (UPLC), and electrospray ionization (ESI) in the positive ion mode. Gradient UPLC separation conditions were optimized for a group of 22 analytes comprising 17 glucocorticosteroids, specific designer steroids such as tetrahydrogestrinone (THG) and specific beta2-agonists such as formoterol. The UPLC/TOFMS separation obtained required 5.5 min only for all the substances tested. Even the critical pair of dexamethasone and betamethasone isomers was almost completely resolved. Thanks to the over 10,000 full-width at half maximum (FWHM) mass resolution and high mass accuracy features of TOFMS 50 mDa window accurate mass chromatograms could be reconstructed for the individual analytes. Sensitive screening in human and calf urine samples fortified at the glucocorticosteroids minimum required performance limit (MRPL) of 30 microg L(-1) (human urine, sports doping) and 2 microg L(-1) (calf urine, veterinary control) could be obtained. The potential of UPLC/TOFMS for confirmatory analysis was shown by determining the accurate mass of all compounds and fragment ions upon in-source collision-induced dissociation (CID) at different energies. The exact mass measurement errors for all glucocorticosteroids were found to be within 6 ppm. Considering veterinary control, limits of detection (LOD) and limits of quantification (LOQ) were determined for most of the analytes in calf urine and found to range from 0.1 to 3.3 and from 0.4 to 4.4 microg L(-1), respectively. The method can be easily extended with other banned substances of interest, as demonstrated by the addition of 21 beta2-agonists to the original analyte mixture in urine, without causing any interferences.
采用最新的高分辨率液相色谱柱技术——超高效液相色谱(UPLC),并结合正离子模式下的电喷雾电离(ESI),开发了一种液相色谱/飞行时间质谱(LC/TOFMS)方法。针对一组包含17种糖皮质激素、特定设计类固醇(如四氢孕三烯酮(THG))和特定β2-激动剂(如福莫特罗)的22种分析物,对梯度UPLC分离条件进行了优化。对于所有测试物质,UPLC/TOFMS分离仅需5.5分钟。即使是地塞米松和倍他米松异构体这一关键对也几乎完全分离。得益于TOFMS超过10,000的半高宽(FWHM)质量分辨率和高质量精度特性,可为各个分析物重建50 mDa窗口的精确质量色谱图。对于添加了糖皮质激素最低要求性能限制(MRPL)为30 μg L⁻¹(人尿,运动兴奋剂检测)和2 μg L⁻¹(小牛尿,兽医控制)的人尿和小牛尿样本,可进行灵敏筛查。通过在不同能量下进行源内碰撞诱导解离(CID)来测定所有化合物和碎片离子的精确质量,展示了UPLC/TOFMS用于确证分析的潜力。发现所有糖皮质激素的精确质量测量误差在6 ppm以内。考虑到兽医控制,测定了小牛尿中大多数分析物的检测限(LOD)和定量限(LOQ),分别为0.1至3.3 μg L⁻¹和0.4至4.4 μg L⁻¹。该方法可轻松扩展至其他感兴趣的违禁物质,如向尿中原分析物混合物中添加21种β2-激动剂所证明的那样,且不会产生任何干扰。