Calero-Cañuelo Carlos, Casado-Carmona Francisco Antonio, Lucena Rafael, Cárdenas Soledad
Affordable and Sustainable Sample Preparation (AS(2)P) Research Group, Departamento de Química Analítica, Instituto Químico para la Energía y el Medioambiente IQUEMA, Universidad de Córdoba, Campus de Rabanales, Edificio Marie Curie, E-14071, Córdoba, Spain.
Affordable and Sustainable Sample Preparation (AS(2)P) Research Group, Departamento de Química Analítica, Instituto Químico para la Energía y el Medioambiente IQUEMA, Universidad de Córdoba, Campus de Rabanales, Edificio Marie Curie, E-14071, Córdoba, Spain; FI-TRACE Group, Department of Chemistry, Faculty of Science, University of the Balearic Islands, Carretera de Valldemossa Km 7.5, E-07122, Palma de Mallorca, Illes Balears, Spain.
Talanta. 2024 May 15;272:125774. doi: 10.1016/j.talanta.2024.125774. Epub 2024 Feb 8.
Direct mass spectrometry (MS) is an exciting strategy in bioanalysis, enabling rapid decision-making in different scenarios. Its application is usually hindered by matrix effects and the typically low concentration of the target compounds in the biofluids. In this sense, combining a previous sample preparation step minimizes or removes these shortcomings. This article describes sorptive tape-spray tandem mass spectrometry (STS-MS/MS) based on mixed-mode particles as a strategy to combine sample preparation and MS analysis in a single device. The technique uses a sorptive tape (ST) consisting of mixed-mode polymeric microparticles (combining ionic exchange and hydrophobic interactions) coated over aluminum foil in a spatial controlled way. The tapes act as the sorptive phases to isolate the analytes from the sample matrix and substrates for STS-MS/MS. The performance of the technique has been evaluated by developing a method to determine codeine in saliva as proof of concept. The affordability of the STs elements allows the preparation of many individual phases at low cost so that several samples can be extracted simultaneously, thus increasing the sample throughput. The extraction variables were optimized following a multivariate approach. Working under the optimum conditions, the limit of detection was 0.3 μg L, while the intraday precision, calculated as relative standard deviation (RSD) at three concentration levels, was better than 9.4 %. The accuracy, expressed as relative recovery, was in the range of 78-98 %. The method was also applied to the analysis of real samples. Despite being a powerful strategy, the direct combination of microextraction to MS is not always affordable in all laboratories. For this reason, the STs were also combined with commercial liquid chromatography-MS working under the direct infusion mode to demonstrate the usefulness of the ST in classical extraction workflows.
直接质谱法(MS)是生物分析中一种令人兴奋的策略,能够在不同场景中实现快速决策。其应用通常受到基质效应以及生物流体中目标化合物典型的低浓度的阻碍。从这个意义上讲,结合先前的样品制备步骤可最大程度地减少或消除这些缺点。本文介绍了基于混合模式颗粒的吸附带喷雾串联质谱法(STS-MS/MS),作为在单个设备中结合样品制备和MS分析的一种策略。该技术使用一种吸附带(ST),它由以空间可控方式涂覆在铝箔上的混合模式聚合物微粒(结合离子交换和疏水相互作用)组成。这些带充当吸附相,用于从样品基质中分离分析物,并作为STS-MS/MS的底物。通过开发一种测定唾液中可待因的方法作为概念验证,对该技术的性能进行了评估。ST元件的经济性使得可以低成本制备许多单个相,从而可以同时提取多个样品,从而提高了样品通量。采用多变量方法对提取变量进行了优化。在最佳条件下工作时,检测限为0.3μg/L,而在三个浓度水平下以相对标准偏差(RSD)计算的日内精密度优于9.4%。以相对回收率表示的准确度在78-98%的范围内。该方法还应用于实际样品的分析。尽管这是一种强大的策略,但在所有实验室中,将微萃取与质谱直接结合并不总是可行的。因此,ST还与在直接进样模式下工作的商业液相色谱-质谱联用,以证明ST在经典提取工作流程中的实用性。