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Updated: May 24, 2026

A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
Monoclonal antibody development against the Hepatitis C virus core protein enables rapid antigen detection
Prince Baffour Tonto1,2, Bobby Brooke Herrera3,4
1Rutgers Global Health Institute, Rutgers University, New Brunswick, NJ, USA.
Insights
New monoclonal antibodies enable rapid, instrument-free detection of Hepatitis C virus core antigen (HCVcAg). This breakthrough supports affordable point-of-care screening and diagnosis, crucial for global HCV elimination efforts.
Area of Science:
- Immunology
- Virology
- Diagnostics
Background:
- Hepatitis C virus (HCV) infection is a significant global health challenge, hindering the WHO's 2030 elimination goal due to diagnostic access limitations.
- Current gold standard HCV RNA testing is expensive and requires specialized infrastructure.
- Existing HCV core antigen (HCVcAg) immunoassays are laboratory-bound and costly.
Purpose of the Study:
- To develop novel monoclonal antibodies (mAbs) for rapid, instrument-free detection of HCV core antigen (HCVcAg).
- To create a foundation for a clinically deployable HCVcAg rapid test for point-of-care screening.
Main Methods:
- HCVcAg-specific mAbs were generated in BALB/c mice using single-cell sorting on the Beacon optofluidic platform.
- Variable regions were recovered, cloned, expressed, and purified.
- Optimal mAb pairs were identified and tested in a lateral flow assay format.
Main Results:
- Developed high-avidity mAbs with diverse epitope recognition, enabling detection of HCVcAg as low as 0.3125 ng/ml.
- The optimal mAb pair demonstrated high diagnostic performance in a lateral flow format: 92.0% sensitivity, 100% specificity, 95.6% accuracy.
- Robust performance was maintained in low viremia samples, with 85.7% sensitivity and 100% specificity.
Conclusions:
- The developed HCVcAg mAbs are suitable for a rapid, instrument-free diagnostic test.
- This technology has the potential to decentralize HCV diagnosis, particularly in resource-limited settings.
- The rapid test can aid in point-of-care screening and treatment-response monitoring for Hepatitis C.
Abstract:
Hepatitis C virus (HCV) remains a major global health burden, with limited access to affordable diagnostics impeding progress toward the World Health Organization target elimination by 2030. While HCV ribonucleic acid (RNA) testing is the gold standard, it requires costly infrastructure and technical expertise. HCV core antigen (HCVcAg) represents a reliable alternative viral analyte, but existing immunoassays remain laboratory-dependent and expensive. Here, we report the development of HCVcAg-specific monoclonal antibodies (mAbs) optimized for rapid, instrument-free antigen detection. BALB/c mice were immunized with HCVcAg, and antigen-specific plasma cells were isolated via single cell sorting on the Beacon optofluidic platform. Paired variable heavy/light regions were recovered by RT-nested PCR, cloned into human IgG1/kappa expression vectors, transiently expressed in HEK293 cells, and the mAbs were purified. Comprehensive molecular profiling identified mAbs with high avidity, diverse germline usage, and distinct epitope recognition. Strategic pairing yielded an optimal combination (M0004-M0007) capable of detecting contrived antigen concentrations as low as 0.3125 ng/ml. In a lateral flow format, this pair achieved superior diagnostic performance: 92.0% sensitivity, 100% specificity, 95.6% accuracy, 100% positive predictive value (PPV), 91.3% negative predictive value (NPV), Cohen's κ = 0.91, area under the curve (AUC) = 0.859, and non-significant McNemar χ². In low viremia samples, performance remained robust with 85.7% sensitivity, 100% specificity, 94.3% accuracy, 100% PPV, 91.3% NPV, κ = 0.88, 0.759 AUC, and non-significant McNemar χ². These findings establish a foundation for a clinically deployable HCVcAg rapid test with strong potential for point-of-care screening, decentralizing diagnosis, and treatment-response monitoring, particularly in resource-limited settings.
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