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首页> 外文期刊>RSC Advances >One-pot synthesis of multidimensional conducting polymer nanotubes for superior performance field-effect transistor-type carcinoembryonic antigen biosensors
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One-pot synthesis of multidimensional conducting polymer nanotubes for superior performance field-effect transistor-type carcinoembryonic antigen biosensors

机译:用于优异的性能场效应晶体管型癌丙烯抗原生物传感器的多维导电聚合物纳米管的单罐合成

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Carcinoembryonic antigen (CEA), a glycoprotein, is a crucially important tumor marker due to its relation to carcinomas. An abnormal level of CEA in the serum is connected to a diagnosis of cancer. In this work, highly sensitive and selective field-effect transistor (FET) biosensors were fabricated to detect CEA, using aptamer-functionalized multidimensional conducting-polymer (3-carboxylate polypyrrole) nanotubes (Apt–C-PPy MNTs). The multidimensional system, C-PPy MNTs, is firstly produced by a solution based temperature controlled self-degradation method. The C-PPy MNTs are integrated with the CEA-binding aptamer immobilized on an interdigitated array electrode substrate by covalent bonding with amide groups (–CONH) to produce a FET-type biosensor transducer. The resulting C-PPy MNT-based FET sensors exhibit a rapid response in real time (<1 s) and ultrasensitivity toward CEA with a limit of detection of 1 fg mL ~(?1) . This limit of detection is 2–3 orders of magnitude more sensitive than previous reports. The liquid-gated FET-type sensor showed specificity toward CEA in a mixed solution containing compounds found in similar proteins and biological signals. Additionally, a superior lifetime is demonstrated for the FET sensor, owing to the covalent bonding involved in the immobilization processes.
机译:甲基丙烯醛抗原(CEA),糖蛋白是一种至关重要的肿瘤标志物,由于其与癌的关系。血清中CEA的异常水平与癌症的诊断相连。在该工作中,使用适体官能化的多维传导 - 聚合物(3-羧酸盐聚吡咯)纳米管(Apt-C-PPY MNT)来制造高度敏感和选择性场效应晶体管(FET)生物传感器以检测CEA。多维系统C-PPY MNT首先通过基于溶液的温控自降解方法生产。通过与酰胺基(-CONH)共价键合以产生FET型生物传感器的C-PPY MNT与固定在交叉阵列电极基板上固定在交叉阵列电极基板上的CEA结合APTAMER。基于C-PPY MNT的FET传感器在实时(<1 s)中表现出快速响应,并且对CEA的超敏感性,具有1 fg ml〜(α1)的检测限。这种检测限度是比以前的报告更敏感的2-3个级。液门型FET型传感器在含有类似蛋白质和生物信号中发现的含有化合物的混合溶液中对CEA表现出特异性。另外,由于固定过程中涉及的共价键合,对FET传感器进行了优异的寿命。

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