Yasukawa Tomoyuki, Suzuki Masato, Sekiya Takashi, Shiku Hitoshi, Matsue Tomokazu
Graduate School of Environmental Studies, Tohoku University, 6-6-11 Aoba, Aramaki, Aoba, Sendai 980-8579, Japan.
Biosens Bioelectron. 2007 May 15;22(11):2730-6. doi: 10.1016/j.bios.2006.11.010. Epub 2006 Dec 21.
Microparticles have been manipulated in a microfluidic channel by means of negative dielectrophoresis (n-DEP), and the approach applied to a heterogeneous immunoassay system. A microfluidic device, with three-dimensional (3-D) microelectrodes fabricated on two substrates, was used to manipulate particle flow in the channel and to capture the particles in the caged area that was enclosed by the collector electrodes. Polystyrene microparticles (6 microm diameters) modified with anti-mouse immunoglobulin G (IgG) were manipulated and captured in the caged area when surrounded by intense n-DEP electric fields. Specifically, particles were trapped when AC voltages with amplitudes of 6-15 V(peak) and frequencies over 500 kHz were applied to the two facing microelectrodes. A heterogeneous sandwich immunoassay was achieved by successively injecting a sample solution containing mouse antigen (IgG), and a solution containing a secondary antibody with a signal source (FITC-labeled anti-mouse IgG antibody), into the channel. The fluorescence intensity from captured particles in the caged area increased with increasing concentrations (10 ng/ml to 10 microg/ml) of mouse IgG. The described system enables mouse IgG to be assayed in 40 min. Thus, the automatic separation of free fractions from desired analytes and labeled antibodies can be achieved using a microfluidic device based on n-DEP.
通过负介电泳(n-DEP)在微流控通道中对微粒进行了操控,并将该方法应用于异质免疫分析系统。使用了一种微流控装置,其在两个基板上制作了三维(3-D)微电极,用于操控通道中的颗粒流,并在由收集电极包围的笼形区域捕获颗粒。当被强n-DEP电场包围时,用抗小鼠免疫球蛋白G(IgG)修饰的聚苯乙烯微粒(直径6微米)在笼形区域被操控和捕获。具体而言,当向两个相对的微电极施加幅度为6 - 15 V(峰值)且频率超过500 kHz的交流电压时,颗粒会被捕获。通过依次将含有小鼠抗原(IgG)的样品溶液和含有带有信号源的二抗(异硫氰酸荧光素标记的抗小鼠IgG抗体)的溶液注入通道,实现了异质夹心免疫分析。笼形区域中捕获颗粒的荧光强度随着小鼠IgG浓度(10 ng/ml至10 μg/ml)的增加而增加。所述系统能够在40分钟内对小鼠IgG进行检测。因此,使用基于n-DEP的微流控装置可以实现从所需分析物和标记抗体中自动分离游离部分。