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Nanochannel array device operating through Prussian blue nanoparticles for sensitive label-free immunodetection of a cancer biomarker

机译:通过普鲁士蓝纳米粒子运行的纳米通道阵列设备,用于癌症生物标记物的灵敏的无标记免疫检测

摘要

A novel nanochannel array (NC) device that operates through Prussian blue nanoparticles (PBNPs) as redox indicator for sensitive label free immunodetection of a cancer biomarker is presented. Stable and narrow-sized (around 4 nm) PBNPs, protected by polyvinylpyrrolidone, exhibited a well-defined and reproducible redox behavior and were successfully applied for the voltammetric evaluation of the nanochannels (20 nm pore sized) blockage due to the immunocomplex formation. The bigger size of the PBNPs compared with ionic indicators such as the [Fe(CN)6]4−/3− system leads to an increase in the steric effects hindering their diffusion toward the signaling electrode which in turn is transduced to an improvement of the detection limit from 200 µg mL−1 to 34 pg human IgG mL−1. This novel and effective PBNPs-NC technology for the detection of small proteins captured inside the nanochannels is successfully applied for the quantification of a cancer biomarker (parathyroid hormone-related protein, PTHrP) in a real clinical scenario such as cell culture medium. The achieved label-free detection of PTHrP at levels of 50 ng mL−1 is with great interest to study relevant functions that this protein exerts in normal tissues and cancer.
机译:提出了一种新颖的纳米通道阵列(NC)设备,该设备可通过普鲁士蓝纳米颗粒(PBNP)作为氧化还原指示剂进行癌症生物标记物的无敏感标记的免疫检测。受聚乙烯吡咯烷酮保护的稳定且窄尺寸(约4 nm)的PBNP,表现出良好的定义和可再现的氧化还原行为,并且由于免疫复合物的形成,已成功用于伏安法评估纳米通道(孔径为20 nm)。与诸如[Fe(CN)6] 4- / 3--等离子指示剂相比,PBNPs的尺寸更大,导致空间效应的增加,从而阻碍了其向信号电极的扩散,进而转导了对PBNPs的改善。检测限从200 µg mL-1至34 pg人IgG mL-1。这项用于检测捕获在纳米通道内的小蛋白质的新颖而有效的PBNPs-NC技术已成功应用于在实际临床情况下(例如细胞培养基)中对癌症生物标记物(甲状旁腺激素相关蛋白,PTHrP)的定量。对PTHrP的50 ng mL-1水平的无标记检测非常感兴趣,以研究该蛋白质在正常组织和癌症中发挥的相关功能。

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