恙虫病
斑疹伤寒
纳米技术
材料科学
化学
病毒学
医学
作者
Sumit,Shagun Gupta,Deepali Chaudhary,Ankur Kaushal
标识
DOI:10.1149/1945-7111/adbdf5
摘要
Abstract Gold nanoparticle-decorated reduced graphene oxides (AuNPs-rGOs) were used for the fabrication of a screen printer manufactured carbon electrode-based sensitive and portable immunosensor for the detection of scrub typhus. The AuNPs-rGOs were synthesized via a chemical reduction method and characterized via Fourier transform infrared spectroscopy, UV‒Vis spectroscopy, field emission scanning microscopy, and transmission electron microscopy. Furthermore, 56 kDa type-specific antigen (TSA) antibodies were used for immobilization over AuNPs-rGOs modified with SPCE via EDC-NHS (1:1) cross-linking chemistry. A type-specific antigen was used at different concentrations to observe the sensor response via cyclic voltammetry, differential pulse voltammetry, and electrochemical impedance spectroscopy using potassium ferricyanide (K4[Fe(CN)6] 3−/4-) as a redox indicator. The developed immunosensor showed excellent sensitivity of 47.80µAcm-2ng-1 and an LOD of 0.02ngµL-1. The developed immunohybrid immunosensor is portable because of its easy mobile connectivity and fast and low cost among scrub typhus biosensors. The sensor is highly specific for TSA detection and performs well in validation with ELISA-positive blood samples and TSA-spiked blood samples.
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