SCIEX, 71 Four Valley Drive, Concord, Ontario L4K 4V8, Canada.
Department of Chemistry, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.
Anal Chim Acta. 2017 Oct 23;991:89-94. doi: 10.1016/j.aca.2017.08.023. Epub 2017 Aug 28.
Mass spectrometry (MS) based quantitative approaches typically require a thorough sample clean-up and a decent chromatographic step in order to achieve needed figures of merit. However, in most cases, such processes are not optimal for urgent assessments and high-throughput determinations. The direct coupling of solid phase microextraction (SPME) to MS has shown great potential to shorten the total sample analysis time of complex matrices, as well as to diminish potential matrix effects and instrument contamination. In this study, we demonstrate the use of the open-port probe (OPP) as a direct and robust sampling interface to couple biocompatible-SPME (Bio-SPME) fibres to MS for the rapid quantitation of opioid isomers (i.e. codeine and hydrocodone) in human plasma. In place of chromatography, a differential mobility spectrometry (DMS) device was implemented to provide the essential selectivity required to quantify these constitutional isomers. Taking advantage of the simplified sample preparation process based on Bio-SPME and the fast separation with DMS-MS coupling via OPP, a high-throughput assay (10-15 s per sample) with limits of detection in the sub-ng/mL range was developed. Succinctly, we demonstrated that by tuning adequate ion mobility separation conditions, SPME-OPP-MS can be employed to quantify non-resolved compounds or those otherwise hindered by co-extracted isobaric interferences without further need of coupling to other separation platforms.
基于质谱(MS)的定量方法通常需要彻底的样品净化和相当的色谱步骤,以达到所需的质量指标。然而,在大多数情况下,这些过程对于紧急评估和高通量测定并不理想。固相微萃取(SPME)与 MS 的直接耦合已显示出缩短复杂基质样品分析总时间的巨大潜力,并减少潜在的基质效应和仪器污染。在本研究中,我们展示了开口探头(OPP)作为一种直接而强大的采样接口,用于将生物相容性 SPME(Bio-SPME)纤维与 MS 耦合,用于快速定量人血浆中的阿片类同分异构体(即可待因和氢可酮)。代替色谱法,采用差分迁移谱(DMS)装置来提供定量这些结构异构体所需的基本选择性。利用基于 Bio-SPME 的简化样品制备过程和通过 OPP 进行的 DMS-MS 耦合的快速分离,开发了一种高通量测定法(每个样品 10-15 s),检测限达到亚纳克/毫升范围。简洁地说,我们证明了通过调整适当的离子迁移率分离条件,SPME-OPP-MS 可用于定量非分辨化合物或那些因共提取等质量干扰而受阻的化合物,而无需进一步与其他分离平台耦合。