Publication | Open Access
Real-time ultra-sensitive detection of SARS-CoV-2 by quasi-freestanding epitaxial graphene-based biosensor
43
Citations
51
References
2021
Year
NanosensorsEngineeringBiomedical EngineeringBiosensorsReal-time Ultra-sensitive DetectionGraphene NanomeshesChemical EngineeringBiosensing SystemsBiomedical DevicesBioimagingNanosensorElectrical TransductionHeat TreatmentNanotechnologyBiomedical SensorsGraphene Quantum DotSensorsBiomedical DiagnosticsNanomaterialsGrapheneBreath Aerosol SamplesElectroanalytical SensorWearable Biosensors
We report the rapid detection of SARS-CoV-2 in infected patients (mid-turbinate swabs and exhaled breath aerosol samples) in concentrations as low as 60 copies/mL of the virus in seconds by electrical transduction of the SARS-CoV-2 S1 spike protein antigen via SARS-CoV-2 S1 spike protein antibodies immobilized on bilayer quasi-freestanding epitaxial graphene without gate or signal amplification. The sensor demonstrates the spike protein antigen detection in a concentration as low as 1 ag/mL. The heterostructure of the SARS-CoV-2 antibody/graphene-based sensor is developed through a simple and low-cost fabrication technique. Furthermore, sensors integrated into a portable testing unit distinguished B.1.1.7 variant positive samples from infected patients (mid-turbinate swabs and saliva samples, 4000-8000 copies/mL) with a response time of as fast as 0.6 s. The sensor is reusable, allowing for reimmobilization of the crosslinker and antibodies on the biosensor after desorption of biomarkers by NaCl solution or heat treatment above 40 °C.
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