Department of Chemistry, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.
Anal Chem. 2024 Oct 22;96(42):16520-16524. doi: 10.1021/acs.analchem.4c04613. Epub 2024 Oct 12.
Coated blade spray-mass spectrometry (CBS-MS) has emerged as a powerful tool for the rapid screening of target compounds at trace levels in complex biological matrices. Despite its potential, the broader adoption of CBS-MS technology has been hindered by the lack of commercially available, user-friendly MS interfaces and extraction devices. In this work, we present comprehensive CBS-MS solutions developed using 3D printing, including a versatile MS interface and two extraction devices tailored to different analytical needs: one is compatible with LC vials for large-volume samples, while the other is optimized for single-drop blood analysis. The MS interface features a novel design that separates the immobilization station from the blade holder, significantly simplifying the operational workflow and minimizing the contamination risks and hazards associated with manual blade handling. The first extraction cartridge can process 48 samples simultaneously with an average sample preparation time of less than 20 s, while the second extraction device enables extraction from 8 single-drop blood samples via on-blade extraction. The developed devices were successfully tested for the rapid screening of seven drugs in both urine and single-drop blood samples, demonstrating a promising analytical performance. Additionally, potential contamination issues related to the use of 3D-printed materials as extraction phases were examined, emphasizing the importance of ensuring that 3D-printed materials do not leach contaminants into samples or solvents and contaminate the MS.
涂层刀片喷雾质谱法 (CBS-MS) 已成为一种强大的工具,可用于快速筛选痕量目标化合物在复杂生物基质中。尽管有潜力,但 CBS-MS 技术的广泛采用受到缺乏商用、用户友好的 MS 接口和提取设备的阻碍。在这项工作中,我们使用 3D 打印展示了全面的 CBS-MS 解决方案,包括多功能 MS 接口和两种针对不同分析需求定制的提取设备:一种与 LC 小瓶兼容,用于大容量样品,另一种则优化用于单滴血分析。MS 接口具有新颖的设计,将固定站与刀片支架分离,显著简化了操作流程,并最大限度地降低了与手动刀片处理相关的污染风险和危害。第一个提取盒可同时处理 48 个样品,平均样品制备时间不到 20 秒,而第二个提取装置可通过刀片上的提取从 8 个单滴血样中提取。所开发的设备已成功用于快速筛选尿液和单滴血样中的七种药物,展示了有前途的分析性能。此外,还检查了与使用 3D 打印材料作为提取相相关的潜在污染问题,强调了确保 3D 打印材料不会将污染物浸出到样品或溶剂中并污染 MS 的重要性。