Department of Chemistry , University of Waterloo , Waterloo , Ontario N2L 3G1 , Canada.
Professional Analytical System (PAS) Technology , 99441 Magdala , Germany.
Anal Chem. 2019 Oct 15;91(20):13039-13046. doi: 10.1021/acs.analchem.9b03225. Epub 2019 Sep 12.
In the development of modern analytical workflows, parameters such as sample turnaround time, cost of analysis, and ease of use must be prioritized. Automation enables reductions in total analysis time, human intervention, and cost per sample. In this report, a suitable automated coated blade spray (CBS) workflow is proposed for the screening and quantitation of multiple substances (i.e., drugs of abuse and pesticides) in complex matrices. In an attempt to reduce the total sample analysis time, several parameters were investigated, including tandem mass spectrometry (MS) dwell time, CBS spray time, and extraction time. Solid-phase microextraction (SPME) method parameters are explored, such as reduction of extraction time for increased signal-to-noise. Model compounds with a moderately wide range of molecular weights (150-500 Da), polarities, and structural diversity were selected in order to monitor analytical figures of merit during method optimization. The resultant automated CBS method proved capable of analyzing the model compounds in human urine in under 10 s total analysis time with excellent accuracy (95-120%) and precision (RSD < 12%). As an application, an automated method for the screening and quantitation of more than 150 pesticides from apple juice was demonstrated on both triple quadrupole and orbitrap instruments in under 15 s total sample analysis time.
在现代分析工作流程的发展中,必须优先考虑样品周转时间、分析成本和易用性等参数。自动化可减少总分析时间、人为干预和每个样本的成本。在本报告中,提出了一种合适的自动化涂层刀片喷雾(CBS)工作流程,用于筛选和定量复杂基质中的多种物质(即滥用药物和农药)。为了减少总样品分析时间,研究了多个参数,包括串联质谱(MS)停留时间、CBS 喷雾时间和提取时间。还探索了固相微萃取(SPME)方法参数,例如通过缩短提取时间来提高信噪比。选择了具有中等分子量范围(150-500 Da)、极性和结构多样性的模型化合物,以便在方法优化过程中监测分析性能。结果表明,自动化 CBS 方法能够在不到 10 秒的总分析时间内分析人尿液中的模型化合物,具有出色的准确性(95-120%)和精密度(RSD < 12%)。作为应用,展示了一种从苹果汁中筛选和定量 150 多种农药的自动化方法,在不到 15 秒的总样品分析时间内,在三重四极杆和轨道阱仪器上均可实现。