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Detecting Lyme Disease Using Antibody-Functionalized Single-Walled Carbon Nanotube Transistors

机译:使用抗体官能化的单壁碳纳米管晶体管检测莱姆病

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摘要

We examined the potential of antibody-functionalized single-walled carbon nanotube (SWNT) field-effect transistors (FETs) for use as a fast and accurate sensor for a Lyme disease antigen. Biosensors were fabricated on oxidized silicon wafers using chemical vapor deposition grown carbon nanotubes that were functionalized using diazonium salts. Attachment of Borrelia burgdorferi (Lyme) flagellar antibodies to the nanotubes was verified by Atomic Force Microscopy and electronic measurements. A reproducible shift in the turn-off voltage of the semiconducting SWNT FETs was seen upon incubation with Borrelia burgdorferi flagellar antigen, indicative of the nanotube FET being locally gated by the residues of flagellar protein bound to the antibody. This sensor effectively detected antigen in buffer at concentrations as low as 1 ng/ml, and the response varied strongly over a concentration range coinciding with levels of clinical interest. Generalizable binding chemistry gives this biosensing platform the potential to be expanded to monitor other relevant antigens, enabling a multiple vector sensor for Lyme disease. The speed and sensitivity of this biosensor make it an ideal candidate for development as a medical diagnostic test.
机译:我们检查了抗体功能化的单壁碳纳米管(SWNT)场效应晶体管(FET)的潜力,该晶体管可用作莱姆病抗原的快速准确传感器。使用化学气相沉积生长的碳纳米管在氧化硅晶片上制造生物传感器,碳纳米管使用重氮盐进行功能化。通过原子力显微镜和电子测量验证了伯氏疏螺旋体(Lyme)鞭毛抗体与纳米管的连接。与伯氏疏螺旋体鞭毛抗原孵育后,可以看到半导体SWNT FET的关断电压有可复制的变化,这表明纳米管FET被与抗体结合的鞭毛蛋白残基局部封闭。该传感器可有效检测到浓度低至1 ng / ml的缓冲液中的抗原,并且在与临床水平相符的浓度范围内,响应变化很大。通用的结合化学为该生物传感平台提供了扩展潜力,以监测其他相关抗原,从而实现了针对莱姆病的多载体传感器。这种生物传感器的速度和灵敏度使其成为医学诊断测试的理想选择。

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