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首页> 外文期刊>Biointerphases >Direct patterning of probe proteins on an antifouling PLL-g-dextran coating for reducing the background signal of fluorescent immunoassays
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Direct patterning of probe proteins on an antifouling PLL-g-dextran coating for reducing the background signal of fluorescent immunoassays

机译:在防污PLL-g-右旋糖酐涂层上直接构建探针蛋白的图案,以减少荧光免疫测定的背景信号

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The limit of detection of advanced immunoassays, biochips and microano biodetection devices is impacted by the non-specific adsorption of target molecules at the sample surface. In this paper, we present a simple and versatile low cost method for generating active surfaces composed of antibodies arrays surrounded by an efficient anti-fouling layer, capable to decrease drastically the fluorescence background signal obtained after interaction with a solution to be analyzed. The technological process involves the direct micro-contact printing of the antibodies probe molecules on a pre-coated PLL-g-dextran thin layer obtained by contact printing using a flat PDMS stamp. Compared to other blocking strategies (ethanolamine blocking treatment, PLL-g-PEG incubation, PLL-g-dextran incubation, printing on a plasma-deposited PEO layer), our surface chemistry method is more efficient for reducing non-specific interactions responsible for a degraded signaloise ratio.
机译:先进的免疫分析,生物芯片和微米/纳米生物检测设备的检测极限受到靶分子在样品表面的非特异性吸附的影响。在本文中,我们提出了一种简单而通用的低成本方法,用于生成由有效防污层包围的抗体阵列组成的活性表面,能够大幅降低与待分析溶液相互作用后获得的荧光背景信号。该技术过程涉及将抗体探针分子直接微接触印刷在预涂的PLL-g-葡聚糖薄层上,该薄层是通过使用平面PDMS压模进行接触印刷而获得的。与其他阻断策略(乙醇胺阻断处理,PLL-g-PEG孵育,PLL-g-右旋糖酐孵育,在血浆沉积的PEO层上印刷)相比,我们的表面化学方法对于减少造成细胞凋亡的非特异性相互作用更有效。信噪比降低。

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