Prokhorov General Physics Institute of the Russian Academy of Sciences , 38 Vavilov Street , 119991 Moscow , Russia.
Moscow Institute of Physics and Technology , 9 Institutskii per., Dolgoprudny , Moscow Region 141700 , Russia.
Anal Chem. 2019 Aug 6;91(15):9852-9857. doi: 10.1021/acs.analchem.9b01519. Epub 2019 Jul 22.
Many immunoassay platforms require time- and labor-consuming tuning of parameters for operation in complex mediums (food, whole blood, etc.), but no universal method has been proposed to accelerate that "trial-and-error" stage. We present a lateral flow platform, applicable to the multitude of assays comprising immunomagnetic separation, as a tool to establish quantitative relationship between analytical characteristics, sample volume, and magnetic enrichment time. The tool permits a user, prior to the analysis, to knowingly select from a "menu" of parameters' values a particular combination that better suits a purpose. Besides, the platform showed quantitative detection in various food of staphylococcal enterotoxin B (SEB) as a model up to 6 pg/mL at the dynamic range of 3.5 orders with minimal sample pretreatment. Such performance is achieved due to using the same magnetic nanoparticles through all stages of analysis in contrast to the traditional approaches that engage these agents either for separation or as labels. The unique combination of broad benefits of magnetic particles, e.g., rapid enrichment and purification of analyte, reduction of matrix effect, extremely high signal-to-noise ratio, etc., are joined in one platform due to the method of their registration by nonlinear magnetization. The platform also retains the advantages of lateral flow principle such as extraordinary simplicity, on-site operation, affordable consumables, and permits samples of virtually any volume. Although tested here for SEB detection, the platform can be extended to other analytes for point-of-care in vitro diagnostics, food analysis, biosafety, environmental applications, etc.
许多免疫分析平台在复杂介质(如食品、全血等)中运行时需要耗时耗力地调整参数,但目前还没有提出通用的方法来加速这一“反复试验”阶段。我们提出了一种侧向流平台,适用于包含免疫磁分离的多种检测方法,作为一种工具来建立分析特性、样品体积和磁富集时间之间的定量关系。该工具允许用户在分析之前,从“菜单”中选择特定的参数值组合,以更好地满足特定目的。此外,该平台在各种食品中显示了金黄色葡萄球菌肠毒素 B(SEB)的定量检测,其动态范围为 3.5 个数量级,检测下限低至 6pg/mL,样品预处理最少。这种性能是通过在分析的所有阶段都使用相同的磁性纳米粒子来实现的,与传统方法不同,传统方法要么将这些试剂用于分离,要么将其用作标记。由于采用非线性磁化方法对磁性粒子进行注册,因此可以将其广泛的优点(例如,快速富集和纯化分析物、减少基质效应、极高的信噪比等)结合在一个平台中。该平台还保留了侧向流原理的优点,例如极其简单、现场操作、经济实惠的耗材,并且允许使用几乎任何体积的样品。虽然这里测试的是 SEB 的检测,但该平台可以扩展到其他用于即时体外诊断、食品分析、生物安全、环境应用等的分析物。