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Accelerated immunoassays based on magnetic particle dynamics in a rotating capillary tube with stationary magnetic field

机译:加速基于磁性粒子动力学免疫测定与恒定磁场的旋转毛细管

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摘要

A rapid and simple magnetic particle-based immunoassay has been demonstrated in a capillary mixing system. Antibody-coated micrometer size super-paramagnetic polystyrene (SPP) particles were used in an assay for rabbit IgG in a sandwich (non-competitive) format. The kinetics of the assay was compared between a plate – based system and a single capillary tube. The interaction between the antigen (R-IgG) and the antibody (anti-R-IgG) that was carried by the SPP particles in a rotating capillary was tested under a stationary magnetic field. Competing magnetic and viscous drag forces helped to enhance the interaction between the analyte and the capture antibodies on the particles. The dimensionless Mason number (Mn) was employed to characterize the magnetic particle dynamics – a previously determined critical Mason number (Mnc) was employed as a guide to the appropriate experimental conditions of magnetic field strength and rotational speed of the capillary. The advantage of the rotating capillary system included a short assay time and a reduced reactive volume (20μl). The results show that the immunoassay kinetics were improved by the formation of chains of the SPP particles for the conditions that corresponded to the critical Mason number.
机译:在毛细管混合系统中已经证明了一种快速,简单的基于磁性粒子的免疫测定方法。抗体包被的微米级超顺磁性聚苯乙烯(SPP)颗粒用于三明治(非竞争性)形式的兔IgG分析。在基于板的系统和单个毛细管之间比较了测定的动力学。在固定磁场下测试了旋转毛细管中SPP颗粒携带的抗原(R-IgG)和抗体(抗R-IgG)之间的相互作用。竞争的磁力和粘性阻力有助于增强分析物与颗粒上捕获抗体之间的相互作用。使用无量纲的梅森数(Mn)表征磁性粒子的动力学特性–预先确定的临界梅森数(Mnc)被用作指导磁场强度和毛细管旋转速度的适当实验条件的指南。旋转毛细管系统的优势包括分析时间短和反应体积减少(20μl)。结果表明,在与临界梅森数相对应的条件下,SPP颗粒链的形成改善了免疫测定动力学。

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