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A nanostructured-nickel based interdigitated capacitive transducer for biosensor applications

机译:基于纳米结构镍的叉指式电容传感器,用于生物传感器应用

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摘要

This paper presents, for the first time, the development of a nickel-based, reliable alternative electrode for biosensor applications. The electrodes are formed of nanosized nickel patterned as interdigitated structure to form a capacitive biosensor platform. To test the sensing performance of new biosensing platform, we investigated cardiovascular risk marker (C-reactive protein-CRP) and to check the specificity of the bioassay bovine serum albumin (BSA) and prostate specific antigen (PSA) were employed as controls. The nickel-electrode surface was covalently functionalized and characterized by Fourier transform infrared spectroscopy (FT-IR). The detection and quantification of CRP-antigen was performed by impediometric measurements. A detection model for the new biosensing platform was developed using the spectral impediometric responses and are matched with the specific antibody-antigen interaction-model, using the Cole-Cole model parameters. The results and analysis shown that the nanosized, nickel-based-electrode surface could be a good potential to be a cost effective alternative to the conventional gold electrodes with a comparable sensing performance, as shown for CRP, with a detection limit of 1-250 ng/ml. Furthermore, nano-sized nickel-based capacitive electrodes were fabricated using integrated circuit (IC) fabrication processes, providing compatibility for the integration of electronic circuits for single-chip and lab-on-chip biosensing applications.
机译:本文首次介绍了用于生物传感器应用的镍基可靠替代电极的开发。电极由图案化为叉指结构的纳米尺寸镍形成,以形成电容性生物传感器平台。为了测试新型生物传感平台的传感性能,我们调查了心血管危险标志物(C反应蛋白-CRP)并检查了生物测定的特异性,以牛血清白蛋白(BSA)和前列腺特异性抗原(PSA)作为对照。镍电极表面被共价官能化并通过傅立叶变换红外光谱(FT-IR)进行表征。 CRP抗原的检测和定量通过阻抗测定进行。使用光谱阻抗反应开发了新的生物传感平台的检测模型,并使用Cole-Cole模型参数将其与特定的抗体-抗原相互作用模型相匹配。结果和分析表明,纳米级镍基电极表面可能具有良好的潜力,可以替代常规金电极,具有可比的传感性能,如CRP所示,检测极限为1-250 ng / ml。此外,使用集成电路(IC)的制造工艺制造了纳米级镍基电容电极,从而为单芯片和芯片实验室生物传感应用的电子电路集成提供了兼容性。

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