Chemical and Veterinary Analytical Institute Münsterland-Emscher-Lippe, Münster, Germany.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2011 Oct;28(10):1352-63. doi: 10.1080/19440049.2011.619504.
This paper describes a method for the determination of priority β-agonists in urine based on a fully automated sample preparation procedure using an online TurboFlow™ chromatography clean-up step and determination with Orbitrap™ mass analyser technology. The principle of the method was the enrichment of the β-agonists after enzymatic hydrolysis overnight on a small column packed with a special stationary phase (TurboFlow™) while flushing away sample matrix and interfering compounds. Thereafter, the analytes were transferred onto an analytical column and detected by liquid chromatography/high-resolution mass spectrometry in full-scan mode at a resolution of R = 50,000 FWHM (full width at half maximum) and in higher energy collisional dissociation (HCD) scan mode at a resolving power of 10,000 FWHM. The optimisation of each step of the method, such as selection of the TurboFlow™ and analytical column as well as sample loading and elution parameters were performed using a standard solution containing salbutamol, clenbuterol and mabuterol at a concentration of 100 µg l(-1). The developed automated sample preparation significantly improved the throughput and efficiency of the previously used screening method and it resulted in a considerable reduction in analysis time. Validation experiments including 24 β-agonists in urine gave decision limits (CCα) between 0.05 and 0.35 µg l(-1). The repeatability of analyses for urine samples spiked at 0.5 µg l(-1) was within the range of 5-26% and recoveries for all compounds were within 89-107%.
本文描述了一种基于全自动样品制备程序,使用在线 TurboFlow™ 色谱净化步骤和轨道阱质谱分析技术,测定尿液中优先β-激动剂的方法。该方法的原理是在一个小柱上填充特殊的固定相(TurboFlow™),通过酶解过夜对β-激动剂进行富集,同时冲掉样品基质和干扰化合物。然后,将分析物转移到分析柱上,通过液相色谱/高分辨率质谱在全扫描模式下以分辨率 R = 50,000 FWHM(半峰全宽)和更高能量碰撞解离(HCD)扫描模式下以分辨率 10,000 FWHM 进行检测。使用含有沙丁胺醇、克伦特罗和马布特罗的标准溶液(浓度为 100μg·l(-1))对方法的每一步进行优化,如 TurboFlow™ 和分析柱的选择以及样品加载和洗脱参数的选择。开发的自动化样品制备方法显著提高了先前筛选方法的通量和效率,并大大缩短了分析时间。验证实验包括尿液中的 24 种β-激动剂,其决定限(CCα)在 0.05 和 0.35μg·l(-1)之间。在 0.5μg·l(-1) 浓度下尿液样品的重复性分析在 5-26%之间,所有化合物的回收率在 89-107%之间。