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采用与CMOS兼容的半导体纳米线进行无标记免疫检测。

Label-free immunodetection with CMOS-compatible semiconducting nanowires.

作者信息

Stern Eric, Klemic James F, Routenberg David A, Wyrembak Pauline N, Turner-Evans Daniel B, Hamilton Andrew D, LaVan David A, Fahmy Tarek M, Reed Mark A

机构信息

Department of Biomedical Engineering, Yale University, P O Box 208284, New Haven, Connecticut 06511, USA.

出版信息

Nature. 2007 Feb 1;445(7127):519-22. doi: 10.1038/nature05498.

Abstract

Semiconducting nanowires have the potential to function as highly sensitive and selective sensors for the label-free detection of low concentrations of pathogenic microorganisms. Successful solution-phase nanowire sensing has been demonstrated for ions, small molecules, proteins, DNA and viruses; however, 'bottom-up' nanowires (or similarly configured carbon nanotubes) used for these demonstrations require hybrid fabrication schemes, which result in severe integration issues that have hindered widespread application. Alternative 'top-down' fabrication methods of nanowire-like devices produce disappointing performance because of process-induced material and device degradation. Here we report an approach that uses complementary metal oxide semiconductor (CMOS) field effect transistor compatible technology and hence demonstrate the specific label-free detection of below 100 femtomolar concentrations of antibodies as well as real-time monitoring of the cellular immune response. This approach eliminates the need for hybrid methods and enables system-scale integration of these sensors with signal processing and information systems. Additionally, the ability to monitor antibody binding and sense the cellular immune response in real time with readily available technology should facilitate widespread diagnostic applications.

摘要

半导体纳米线有潜力成为高灵敏度和高选择性的传感器,用于对低浓度致病微生物进行无标记检测。离子、小分子、蛋白质、DNA和病毒的溶液相纳米线传感已得到成功证明;然而,用于这些演示的“自下而上”纳米线(或类似结构的碳纳米管)需要混合制造方案,这会导致严重的集成问题,阻碍了其广泛应用。类似纳米线的器件采用的替代“自上而下”制造方法,由于工艺导致的材料和器件退化,性能不尽人意。在此,我们报告一种使用互补金属氧化物半导体(CMOS)场效应晶体管兼容技术的方法,从而证明能够对低于100飞摩尔浓度的抗体进行特异性无标记检测,并能实时监测细胞免疫反应。这种方法无需混合方法,能够将这些传感器与信号处理和信息系统进行系统规模的集成。此外,利用现有技术实时监测抗体结合并感知细胞免疫反应的能力,应有助于广泛的诊断应用。

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