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Performance Analysis of a Field-Effect-Transistor Based Aptasensor

机译:基于现场效应晶体管的Aptasensor的性能分析

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Prostate cancer is one of the most diagnosed cancers which leads to a considerable number of deaths due to the lack of early and sensitive detection. This paper presents an aptamer functionalized field effect (FET) based biosensor for the detection of prostate cancer. Prostate specific antigen (PSA) is considered as the biomarker for prostate cancer whose detection is confirmed by attaching aptamers onto the sensor surface. Through the modelling and numerical simulation, the paper aims to evaluate and predict the performance parameters such as sensitivity, settling time, and limit of detection (LOD) of a label-free FET based electronic biosensor. Various sensor parameters such as structure (i.e., geometry), type of the FET (e.g., nanowire FET, spherical FET, ion-selective FET, and magnetic particle) radius of the FET channel and incubation time are optimized and analyzed. In addition, concentration of analyte biomolecules, diffusion coefficients and affinity to the receptor molecules are also investigated to determine the optimize performance parameters.
机译:前列腺癌是最具诊断的癌症之一,由于缺乏早期和敏感的检测,导致相当数量的死亡。本文介绍了基于适体功能化的生物传感器,用于检测前列腺癌。前列腺特异性抗原(PSA)被认为是前列腺癌的生物标志物,其通过将适体附着在传感器表面上来确认检测。通过建模和数值模拟,纸张旨在评估和预测基于无标签FET的电子生物传感器的无灵敏度,沉降时间和检测(LOD)的性能参数。优化和分析了各种传感器参数,例如结构(即,几何形状),FET的类型(例如,纳米线FET,球形FET,离子选择性FET和磁性粒子)半径和孵育时间。另外,还研究了分析物生物分子,扩散系数和对受体分子的亲和力的浓度以确定优化性能参数。

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