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Nanoparticles-based nanochannels assembled on a plastic flexible substrate for label-free immunosensing

机译:基于纳米粒子的纳米通道组装在塑料柔性基板上,实现无标记的免疫传感

摘要

A novel, cheap, disposable and single-use nanoparticles-based nanochannel platform assembled on a flexible substrate for label-free immunosensing is presented. This sensing platform is formed by the dip-coating of a homogeneous and assembled monolayer of carboxylated polystyrene nanospheres (PS, 200 and 500 nm-sized) onto the working area of flexible screen-printed indium tin oxide/polyethylene terephthalate (ITO/PET) electrodes. The spaces between the self-assembled nanospheres generate well-ordered nanochannels, with inter-PS particles distances of around 65 and 24 nm respectively. The formed nanochannels are used for the effective immobilization of antibodies and subsequent protein detection based on the monitoring of [Fe(CN)6]4− flow through diffusion and the decrease in the differential pulse voltammetric signal upon immunocomplex formation. The obtained sensing system is nanochannel-size dependent and allows human immunoglobulin G (IgG) (chosen as a model analyte) to be detected at levels of 580 ng/mL. The system also exhibits an excellent specificity against other proteins present in real samples and shows good performance with a human urine sample. The developed device represents an integrated and simple biodetection system which overcomes many of the limitations of previously reported nanochannels-based approaches and can be extended in the future to several other immuno and DNA detection systems.
机译:提出了一种新颖,便宜,一次性和一次性使用的基于纳米颗粒的纳米通道平台,该平台组装在柔性基板上,用于无标记的免疫传感。该传感平台是通过将均匀且组装好的羧化聚苯乙烯纳米球(PS,200和500 nm尺寸)单层浸涂到柔性丝网印刷氧化铟锡/聚对苯二甲酸乙二醇酯(ITO / PET)的工作区域上而形成的电极。自组装纳米球之间的空间会产生有序的纳米通道,PS粒子之间的距离分别约为65和24 nm。形成的纳米通道可用于有效固定抗体,并基于对[Fe(CN)6] 4-通过扩散的监测以及免疫复合物形成后差分脉冲伏安信号的减少进行监测,从而进行随后的蛋白质检测。所获得的传感系统取决于纳米通道的大小,并允许以580 ng / mL的水平检测人体免疫球蛋白G(IgG)(被选作模型分析物)。该系统还对真实样品中存在的其他蛋白质表现出优异的特异性,并在人类尿液样品中显示出良好的性能。开发的设备代表了一种集成且简单的生物检测系统,该系统克服了以前报道的基于纳米通道的方法的许多局限性,并且可以在将来扩展到其他几种免疫和DNA检测系统。

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