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Detection of immunoglobulins in a laser induced fluorescence system utilizing polydimethysiloxane microchips with advanced surface and optical properties

机译:使用具有先进表面和光学特性的聚二甲基硅氧烷微芯片在激光诱导的荧光系统中检测免疫球蛋白

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摘要

We developed an automated laser induced fluorescence system utilizing microfluidic chips for detection and quantification of immunoglobulins. Microchips were fabricated from polydimethysiloxane (PDMS) using the so-called “prepolymerization technique.” The microchip structure helped minimize the effects of PDMS autofluorescence and light scattering. Furthermore, a thin and uniform PDMS layer forming the top of the microchip enabled proper focusing and collection of the excitation beam and the emitted fluorescence, respectively. The developed system was tested for the detection of mouse immunoglobulins. The capturing antibodies were immobilized on internal microchannel walls in the form of a polyelectrolyte. We clearly show that this immobilization technique, if correctly realized, gives results with high reproducibility. After sample incubation and washing, secondary antibodies labeled by fluorescein isothiocyanate were introduced into microchannels to build a detectable complex. We show that mouse antibodies can be quantified in a wide concentration range, 0.01–100 μg ml−1. The lower detection limit was below 0.001 μg ml−1 (6.7 pM). The developed laser induced fluorescence (LIF) apparatus is relatively cheap and easy to construct. The total cost of the developed LIF detector is lower than a typical price of plate readers. If compared to classical ELISA (enzyme linked immunosorbent assay) plate systems, the detection of immunoglobulins or other proteins in the developed PDMS microfluidic device brings other important benefits such as reduced time demands (10 min incubation) and low reagent consumption (less than 1 μl). The cost of the developed PDMS chips is comparable with the price of commercial ELISA plates. The main troubleshooting related to the apparatus development is also discussed in order to help potential constructors.
机译:我们开发了一种利用微流控芯片检测和定量免疫球蛋白的自动化激光诱导荧光系统。使用所谓的“预聚合技术”由聚二甲基硅氧烷(PDMS)制造微芯片。微芯片结构有助于最大程度地降低PDMS自发荧光和光散射的影响。此外,形成微芯片顶部的薄而均匀的PDMS层分别使激发光束和发出的荧光正确聚焦和收集。测试开发的系统以检测小鼠免疫球蛋白。捕获抗体以聚电解质的形式固定在内部微通道壁上。我们清楚地表明,这种固定技术,如果正确实现的话,可提供具有高再现性的结果。样品孵育和洗涤后,将异硫氰酸荧光素标记的第二抗体引入微通道以构建可检测的复合物。我们表明,可以在0.01–100μgml -1 的宽浓度范围内对小鼠抗体进行定量。检测下限低于0.001μgml -1 (6.7 pM)。研发的激光诱导荧光(LIF)设备相对便宜且易于构建。研发的LIF检测器的总成本低于酶标仪的典型价格。如果与传统的ELISA(酶联免疫吸附测定)平板系统相比,在已开发的PDMS微流控设备中检测免疫球蛋白或其他蛋白质具有其他重要优势,例如减少了时间需求(孵育10分钟)和试剂消耗低(小于1μl) )。开发的PDMS芯片的成本与商业ELISA板的价格相当。还讨论了与设备开发相关的主要故障排除方法,以帮助潜在的构造者。

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