Development and Analytical Evaluation of a Point-of-Care Electrochemical Biosensor for Rapid and Accurate SARS-CoV-2 Detection

Author:

Meshesha Mesfin1,Sardar Anik2,Supekar Ruchi2,Bhattacharjee Lopamudra2,Chatterjee Soumyo2,Halder Nyancy2,Mohanta Kallol2,Bhattacharyya Tarun Kanti3,Pal Biplab12

Affiliation:

1. Department of Virology, Opteev Technologies Inc., Baltimore, MD 21225, USA

2. Research and Development Laboratory, Opteev Healthtech, GN-4, Sector-V, Kolkata 700091, India

3. Department of Electronics and Electrical Communication Engineering, Indian Institute of Technology, Kharagpur 721302, India

Abstract

The COVID-19 pandemic has underscored the critical need for rapid and accurate screening and diagnostic methods for potential respiratory viruses. Existing COVID-19 diagnostic approaches face limitations either in terms of turnaround time or accuracy. In this study, we present an electrochemical biosensor that offers nearly instantaneous and precise SARS-CoV-2 detection, suitable for point-of-care and environmental monitoring applications. The biosensor employs a stapled hACE-2 N-terminal alpha helix peptide to functionalize an in situ grown polypyrrole conductive polymer on a nitrocellulose membrane backbone through a chemical process. We assessed the biosensor’s analytical performance using heat-inactivated omicron and delta variants of the SARS-CoV-2 virus in artificial saliva (AS) and nasal swab (NS) samples diluted in a strong ionic solution, as well as clinical specimens with known Ct values. Virus identification was achieved through electrochemical impedance spectroscopy (EIS) and frequency analyses. The assay demonstrated a limit of detection (LoD) of 40 TCID50/mL, with 95% sensitivity and 100% specificity. Notably, the biosensor exhibited no cross-reactivity when tested against the influenza virus. The entire testing process using the biosensor takes less than a minute. In summary, our biosensor exhibits promising potential in the battle against pandemic respiratory viruses, offering a platform for the development of rapid, compact, portable, and point-of-care devices capable of multiplexing various viruses. The biosensor has the capacity to significantly bolster our readiness and response to future viral outbreaks.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference81 articles.

1. Coronavirus Disease 2019–COVID-19;Dhama;Clin. Microbiol. Rev.,2020

2. COVID-19 Diagnosis and Management: A Comprehensive Review;Pascarella;J. Intern. Med.,2020

3. Current Challenges in Identification of Clinical Characteristics and Detection of COVID-19: A Comprehensive Review;More;Meas. Sens.,2021

4. Mohite, V., Vyas, K., Phadke, G., and Rawtani, D. (2022). COVID-19 in the Environment, Elsevier.

5. A Comprehensive Review on COVID-19 Vaccines: Development, Effectiveness, Adverse Effects, Distribution and Challenges;Rahman;VirusDisease,2022

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