REQUIMTE, Serviço de Química-Física, Faculdade de Farmácia, Universidade do Porto, Rua Aníbal Cunha, 164, 4099-030, Porto, Portugal.
Department of Chemistry, Faculty of Sciences, University of the Balearic Islands, Carretera de Valldemossa km 7.5, 07122, Palma, Illes Balears, Spain.
Anal Bioanal Chem. 2010 May;397(1):77-86. doi: 10.1007/s00216-010-3522-1. Epub 2010 Feb 27.
In the present work, it is proposed, for the first time, an on-line automatic renewable molecularly imprinted solid-phase extraction (MISPE) protocol for sample preparation prior to liquid chromatographic analysis. The automatic microscale procedure was based on the bead injection (BI) concept under the lab-on-valve (LOV) format, using a multisyringe burette as propulsion unit for handling solutions and suspensions. A high precision on handling the suspensions containing irregularly shaped molecularly imprinted polymer (MIP) particles was attained, enabling the use of commercial MIP as renewable sorbent. The features of the proposed BI-LOV manifold also allowed a strict control of the different steps within the extraction protocol, which are essential for promoting selective interactions in the cavities of the MIP. By using this on-line method, it was possible to extract and quantify riboflavin from different foodstuff samples in the range between 0.450 and 5.00 mg L(-1) after processing 1,000 microL of sample (infant milk, pig liver extract, and energy drink) without any prior treatment. For milk samples, LOD and LOQ values were 0.05 and 0.17 mg L(-1), respectively. The method was successfully applied to the analysis of two certified reference materials (NIST 1846 and BCR 487) with high precision (RSD < 5.5%). Considering the downscale and simplification of the sample preparation protocol and the simultaneous performance of extraction and chromatographic assays, a cost-effective and enhanced throughput (six determinations per hour) methodology for determination of riboflavin in foodstuff samples is deployed here.
在本工作中,首次提出了一种在线自动可再生分子印迹固相萃取(MISPE)方案,用于液相色谱分析前的样品制备。自动微尺度程序基于阀上实验室(LOV)格式下的珠注射(BI)概念,使用多注射器滴定管作为处理溶液和悬浮液的推进装置。通过使用商业 MIP 作为可再生吸附剂,成功实现了对含有不规则形状分子印迹聚合物(MIP)颗粒的悬浮液的高精度处理。所提出的 BI-LOV 歧管的特点还允许严格控制萃取方案中的不同步骤,这对于促进 MIP 腔中的选择性相互作用至关重要。通过使用这种在线方法,可以从不同的食品样品中提取和定量核黄素,范围在 0.450 到 5.00 mg L(-1) 之间,处理 1000 μL 样品(婴儿牛奶、猪肝提取物和能量饮料)后无需进行任何预处理。对于牛奶样品,LOD 和 LOQ 值分别为 0.05 和 0.17 mg L(-1)。该方法成功应用于两种认证参考物质(NIST 1846 和 BCR 487)的分析,具有高精度(RSD < 5.5%)。考虑到样品制备方案的简化和小型化以及萃取和色谱分析的同时进行,这里采用了一种经济高效且具有增强通量(每小时六次测定)的方法,用于测定食品样品中的核黄素。