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Gold Nano-particle Based Al Interdigitated Electrode Electrical Biosensor for Specific ssDNA Target Detection

机译:用于特异性SSDNA靶检测的金纳米颗粒基Al inldigitated电极电气传感器

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Interdigitated electrode based electrical biosensors are prominent in biosensor field. The large number of finger electrodes as comb structure gain high sensitivity through electrical measurements. Listeria monocytogenes is a serious food borne pathogen based bacterium that can cause dangerous disease to human, some infection may result in death. In here, biosensor was prepared from 1μm gap Aluminum Interdigitated Electrode (Al IDE). Functionalization steps of the Al IDE to create biosensor was based on silanization by APTES, immobilization with Gold Nano particles (GNPs) mixed single stranded Listeria synthetic probe ssDNA with Au nano-particles and blocking with tween-20. Before and after functionalization the sensor was characterized morphologically using SEM images and structurally using EDX spectra. The functionalization steps were electrically characterized using current-voltage measurements. The selectivity of the biosensor with specific target was identified electrically using complementary, non-complementary and single base mismatch ssDNA targets. Blocking step with tween-20 was important to detect target specifically. The obtained variations in current indicate the varied concentrations of Listeria targets and it is confirmed that biosensor is suitable to detect different concentrations in the range from 10 fM to 10 μM.
机译:在生物传感器场中,基于电极基的电气生物传感器突出。大量的手指电极作为梳理结构通过电测量增强了高灵敏度。 Histeria单核细胞增生是一种严重的食物,可引​​起的病原菌细菌可引起人类危险的疾病,有些感染可能导致死亡。在此,生物传感器由1μm间隙铝互联电极(Al IDE)制备。用于产生生物传感器的Al IDE的官能化步骤基于硅烷化,用金纳米颗粒(GNP)混合的单链李斯特菌合成探针SSDNA与Au纳米颗粒的固定,并用Tween-20封闭。在功能化之前和之后,传感器在形态学地使用SEM图像表征,并且使用EDX光谱在结构上表征。使用电流电压测量的功能化步骤是电表征的。使用互补,非互补和单碱基错配SSDNA靶标鉴定了具有特定靶标的生物传感器的选择性。具有Tween-20的阻塞步骤对于特异性检测目标是重要的。所获得的电流变化表明了李斯特菌靶的变化浓度,并且证实生物传感器适合于检测10 fm至10μm的不同浓度。

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