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Selectively detecting attomolar concentrations of proteins using gold lined nanopores in a nanopore blockade sensor

机译:在纳米孔封闭式传感器中使用金衬里纳米孔选择性地检测蛋白质的抗摩尔浓度

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Disease diagnosis at earlier stages requires the development of ultrasensitive biosensors for detecting low-abundance biomarkers in complex biological fluids within a reasonable time frame. Here, we demonstrate the development of an ultrasensitive nanopore blockade biosensor that can rapidly diagnose a model protein biomarker, prostate-specific antigen (PSA) with high selectivity. The solid-state nanopores have gold located only along the length of the nanopore whilst the rest of the membrane is silicon nitride. The orthogonal use of materials allows nanopore arrays with a different surface chemistry inside the nanopore relative to the rest of the membrane to be fabricated. The importance of this differential surface chemistry is it can improve the detection limit of nanopore blockade sensors in quantitative analysis. Based on such functionalized nanopore devices, nanopore blockade sensors lower the limit of detection by an order of magnitude and enable ultrasensitive detection of PSA as low as 80 aM. The findings from this study open new opportunities for nanopore sensors in further developments including optical detection and ultralow detection limit biosensing at complex biological fluids.
机译:早期阶段的疾病诊断需要开发超敏感的生物传感器,用于在合理的时间框架内检测复杂生物流体中的低丰度生物标志物。在这里,我们证明了超细纳米孔阻断生物传感器的发展,其可以快速诊断模型蛋白生物标志物,具有高选择性的模型蛋白质生物标志物,前列腺特异性抗原(PSA)。固态纳米孔仅沿着纳米孔的长度位于纳米孔的剩余部分是氮化硅的。材料的正交用途允许纳米孔阵列在纳米孔内具有不同的表面化学相对于待制造的其余膜。这种差异表面化学的重要性是可以改善定量分析中纳米孔封锁传感器的检测极限。基于这种官能化纳米孔装置,纳米孔封锁传感器将检测极限降低了一个幅度,使得PSA的超细敏感检测低至80 AM。本研究中的调查结果开辟了纳米孔传感器在进一步发展中的新机会,包括在复杂的生物流体中的光学检测和超级检测极限生物溶解。

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