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Horizontally Aligned Carbon Nanotube Based Biosensors for Protein Detection

机译:基于水平排列的碳纳米管的蛋白质检测生物传感器

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A novel horizontally aligned single-walled carbon nanotube (CNT) Field Effect Transistor (FET)-based biosensing platform for real-time and sensitive protein detections is proposed. Aligned nanotubes were synthesized on quartz substrate using catalyst contact stamping, surface-guided morphological growth and chemical vapor deposition gas-guided growth methods. Real-time detection of prostate-specific antigen (PSA) using as-prepared FET biosensors was demonstrated. The kinetic measurements of the biosensor revealed that the drain current (I d ) decreased exponentially as the concentration of PSA increased, indicating that the proposed FET sensor is capable of quantitative protein detection within a detection window of up to 1 μM. The limit of detection (LOD) achieved by the proposed platform was demonstrated to be 84 pM, which is lower than the clinically relevant level (133 pM) of PSA in blood. Additionally, the reported aligned CNT biosensor is a uniform sensing platform that could be extended to real-time detections of various biomarkers.
机译:提出了一种新颖的基于水平排列的单壁碳纳米管(CNT)场效应晶体管(FET)的生物传感平台,用于实时和敏感的蛋白质检测。使用催化剂接触压印,表面引导的形态生长和化学气相沉积气体引导的生长方法,在石英衬底上合成了取向的纳米管。演示了使用准备好的FET生物传感器实时检测前列腺特异性抗原(PSA)。生物传感器的动力学测量表明,随着PSA浓度的增加,漏极电流(I d)呈指数下降,表明所提出的FET传感器能够在高达1μM的检测范围内定量蛋白质检测。通过该平台实现的检测极限(LOD)被证明为84 pM,低于血液中PSA的临床相关水平(133 pM)。另外,所报道的对齐的CNT生物传感器是一个统一的传感平台,可以扩展到各种生物标志物的实时检测。

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