Wageningen Food Safety Research, Wageningen University and Research, P.O. Box 230, 6700 AE Wageningen, The Netherlands.
ASSET Technology Centre, Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, 19 Chlorine Gardens, Belfast BT9 5DL, Northern Ireland, U.K.
Anal Chem. 2021 Nov 30;93(47):15736-15743. doi: 10.1021/acs.analchem.1c03816. Epub 2021 Nov 2.
Paramagnetic microspheres can be used in planar array fluorescence immunoassays for single or multiplex screening of food contaminants. However, no confirmation of the molecular identity is obtained. Coated blade spray (CBS) is a direct ionization mass spectrometry (MS) technique, and when combined with triple quadrupole MS/MS, it allows for rapid confirmation of food contaminants. The lack of chromatography in CBS, though, compromises the specificity of the measurement for unequivocal identification of contaminants, based on the European Union (EU) regulation. Therefore, a rapid and easy-to-use immuno-magnetic blade spray (iMBS) method was developed in which immuno-enriched paramagnetic microspheres replace the coating of CBS. The iMBS-MS/MS method was fully optimized, validated in-house following the EU 2021/808 regulation, and benchmarked against a commercial lateral flow immunoassay (LFIA) for on-site screening of DA. The applicability of iMBS-MS/MS was further demonstrated by analyzing incurred mussel samples. The combination of immunorecognition and MS/MS detection in iMBS-MS/MS enhances the measurement's selectivity, which is demonstrated by the rapid differentiation between the marine toxin domoic acid (DA) and its structural analog kainic acid (KA), which cannot be achieved with the LFIA alone. Interestingly, this first-ever reported iMBS-MS/MS method is generic and can be adapted to include any other immuno-captured food contaminant, provided that monoclonal antibodies are available, thus offering a complementary confirmatory analysis approach to multiplex immunoassay screening methods. Moreover, thanks to its speed of analysis, iMBS-MS/MS can bridge the logistics gap between future large-scale on-site testings using LFIAs and classical time-consuming confirmatory MS analysis performed in official control laboratories.
顺磁微球可用于平面阵列荧光免疫分析,用于单一组分或多组分筛选食品污染物。然而,无法获得分子身份的确证。涂覆刀片喷雾(CBS)是一种直接电离质谱(MS)技术,当与三重四极杆 MS/MS 结合使用时,可快速确认食品污染物。然而,由于欧盟(EU)法规的规定,CBS 中缺乏色谱技术,会影响测量的特异性,无法对污染物进行明确鉴定。因此,开发了一种快速且易于使用的免疫磁性刀片喷雾(iMBS)方法,该方法用免疫富集的顺磁微球代替 CBS 的涂覆。对 iMBS-MS/MS 方法进行了全面优化,并按照欧盟 2021/808 法规进行了内部验证,与商业侧向流动免疫测定(LFIA)进行了现场筛选 DA 的比较。通过分析实际贻贝样本进一步证明了 iMBS-MS/MS 的适用性。iMBS-MS/MS 中的免疫识别和 MS/MS 检测的结合增强了测量的选择性,这一点通过快速区分海洋毒素软骨藻酸(DA)和其结构类似物 kainic 酸(KA)得到证明,而 LFIA 则无法做到这一点。有趣的是,这种首创的 iMBS-MS/MS 方法是通用的,可以适应任何其他免疫捕获的食品污染物,只要有单克隆抗体即可,因此为多重免疫分析筛选方法提供了互补的确认分析方法。此外,由于其分析速度快,iMBS-MS/MS 可以弥补未来使用 LFIA 进行大规模现场测试与在官方控制实验室进行耗时的经典确认 MS 分析之间的物流差距。