Physicochimie des Electrolytes, Colloïdes et Sciences Analytiques (PECSA), UMR 7195 CNRS-ESPCI-ENSCP, France.
Lab Chip. 2011 Dec 21;11(24):4207-13. doi: 10.1039/c1lc20809h. Epub 2011 Oct 28.
We report on the development of a simple and easy to use microchip dedicated to allergy diagnosis. This microchip combines both the advantages of homogeneous immunoassays i.e. species diffusion and heterogeneous immunoassays i.e. easy separation and preconcentration steps. In vitro allergy diagnosis is based on specific Immunoglobulin E (IgE) quantitation, in that way we have developed and integrated magnetic core-shell nanoparticles (MCSNPs) as an IgE capture nanoplatform in a microdevice taking benefit from both their magnetic and colloidal properties. Integrating such immunosupport allows to perform the target analyte (IgE) capture in the colloidal phase thus increasing the analyte capture kinetics since both immunological partners are diffusing during the immune reaction. This colloidal approach improves 1000 times the analyte capture kinetics compared to conventional methods. Moreover, based on the MCSNPs' magnetic properties and on the magnetic chamber we have previously developed the MCSNPs and therefore the target can be confined and preconcentrated within the microdevice prior to the detection step. The MCSNPs preconcentration factor achieved was about 35,000 and allows to reach high sensitivity thus avoiding catalytic amplification during the detection step. The developed microchip offers many advantages: the analytical procedure was fully integrated on-chip, analyses were performed in short assay time (20 min), the sample and reagents consumption was reduced to few microlitres (5 μL) while a low limit of detection can be achieved (about 1 ng mL(-1)).
我们报告了一种简单易用的微芯片的开发,该微芯片结合了均相免疫分析(即物种扩散)和异相免疫分析(即易于分离和预浓缩步骤)的优点。体外过敏诊断基于特异性免疫球蛋白 E(IgE)定量,因此我们开发并整合了磁性核壳纳米粒子(MCSNPs)作为微器件中的 IgE 捕获纳米平台,利用其磁性和胶体性质。整合这种免疫支持允许在胶体相中进行目标分析物(IgE)的捕获,从而提高分析物捕获动力学,因为在免疫反应过程中两种免疫伙伴都在扩散。与传统方法相比,这种胶体方法将分析物捕获动力学提高了 1000 倍。此外,基于 MCSNPs 的磁性和我们之前开发的磁性腔室,MCSNPs 可以被限制和预浓缩在微器件内,然后再进行检测步骤。实现的 MCSNPs 预浓缩因子约为 35000,允许达到高灵敏度,从而避免在检测步骤中进行催化放大。所开发的微芯片具有许多优点:分析程序完全在芯片上集成,分析时间短(20 分钟),样品和试剂的消耗减少到几微升(5 μL),同时可以实现低检测限(约 1ng mL(-1))。