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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Enhancement of sensitivity and specificity by surface modification of carbon nanotubes in diagnosis of prostate cancer based on carbon nanotube field effect transistors
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Enhancement of sensitivity and specificity by surface modification of carbon nanotubes in diagnosis of prostate cancer based on carbon nanotube field effect transistors

机译:基于碳纳米管场效应晶体管,通过碳纳米管的表面修饰增强对前列腺癌的诊断的敏感性和特异性

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This paper presents a simple and sensitive method for the real-time detection of a prostate cancer marker (PSA-ACT complex) through label-free protein biosensors based on a carbon nanotube field effect transistor (CNT-FET). Herein, the CNT-FET was functionalized with a solution containing various linker-to-spacer ratios, the binding event of the target PSA-ACT complex onto the receptor detected by monitoring the gating effect caused by charges in the target PSA-ACT complex. Since the biosensors were used in a buffer solution, it was crucial to control the distance between the receptors through introduction of linkers and spacers so that the charged target PSA-ACT complex could easily approach the CNT surface within the Debye length to give a large gating effect. The results show that CNT-FET biosensors modified with only linkers could not detect target proteins unless a very high concentration of the PSA-ACT complex solution (similar to 500 ng/ml) was injected, while those modified with a 1:3 ratio of linker-to-spacer could detect 1.0 ng/ml without any pretreatment. Moreover, our linker and spacer-modified CNT-FET could successfully block non-target proteins and selectively detect the target protein in human serum. Significantly, this strategy can be applied to general antibody-based detection schemes and enables production of very simple and sensitive electronic biosensors to detect clinically important biomarkers for disease diagnosis.
机译:本文提出了一种基于碳纳米管场效应晶体管(CNT-FET)的无标记蛋白质生物传感器,用于实时检测前列腺癌标志物(PSA-ACT复合物)的简单而灵敏的方法。在本文中,CNT-FET用包含各种接头与间隔物比率的溶液进行功能化,通过监测目标PSA-ACT络合物中的电荷引起的门控效应,检测到目标PSA-ACT络合物与受体的结合事件。由于生物传感器用于缓冲溶液中,因此至关重要的是,通过引入接头和间隔基来控制受体之间的距离,以使带电的目标PSA-ACT复合物能够轻松地在Debye长度内接近CNT表面,以提供较大的门控影响。结果表明,仅注入接头修饰的CNT-FET生物传感器无法检测目标蛋白质,除非注入浓度很高的PSA-ACT复合溶液(约500 ng / ml),而以1:3的比例修饰的无需进行任何预处理,接头到间隔子即可检测到1.0 ng / ml。此外,我们的连接子和间隔基修饰的CNT-FET可以成功阻断非靶蛋白,并选择性检测人血清中的靶蛋白。重要的是,该策略可应用于基于抗体的常规检测方案,并能够生产非常简单和灵敏的电子生物传感器,以检测临床上重要的生物标志物以进行疾病诊断。

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