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A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
Cytotoxic T lymphocyte response and viral load in hepatitis C virus infection
1Hepatology Division, Jichi Medical School, Tochigi, Japan.
Insights
Cytotoxic T lymphocyte (CTL) responses targeting hepatitis C virus (HCV) nucleoprotein epitopes were assessed in patients with chronic HCV. Lower viral load correlated with higher CTL activity, suggesting CTLs may control HCV, but high viral loads might suppress responses.
Area of Science:
- Immunology
- Virology
- Hepatology
Background:
- Chronic hepatitis C virus (HCV) infection is a major global health concern.
- Cytotoxic T lymphocyte (CTL) responses are crucial for viral clearance.
- Specific epitopes, like HCV nucleoprotein residues 88-96 restricted by human leukocyte antigen (HLA) B44, are key targets for CTLs.
Purpose of the Study:
- To assess CTL responses to the HLA B44-restricted HCV nucleoprotein epitope (residues 88-96) in patients with chronic HCV.
- To investigate the relationship between CTL activity, viral load, and viral sequence variations.
Main Methods:
- Analysis of CTL response to synthesized 9-mer peptides corresponding to patient-specific HCV residues 88-96.
- Measurement of serum HCV RNA concentration and amino acid sequencing of HCV residues 81-100.
- Assessment of cytotoxic activity against target cells.
Main Results:
- Seven of 27 patients showed significant CTL responses (>20% cytotoxic activity) to the target epitope.
- Higher CTL activity was observed in patients with lower serum HCV RNA titers (P = .0006).
- Some patients exhibited responses to other identified HLA B44- or HLA A11-restricted epitopes.
Conclusions:
- HLA B44-restricted CTLs, alongside other HCV-specific CTLs, may contribute to inhibiting HCV replication.
- High-titer HCV infection appears to suppress CTL responses, potentially hindering viral control.
Abstract:
A cytotoxic T lymphocyte (CTL) response to the hepatitis C virus (HCV) nucleoprotein residues 88-96 that are the minimal and optimal epitope for human leukocyte antigen (HLA) B44-restricted CTLs was assessed in 27 HLA B44-positive patients with chronic HCV infection. Serum HCV RNA concentration and the amino acid sequence of the residues 81-100 were also determined. Three patients were infected with HCV with uncommon amino acid substitutions within the epitope. One was infected with HCV with an amino acid substitution in the flanking residues of the epitope. To stimulate CTLs in the peripheral blood, 9-mer peptides that corresponded to the residues 88-96 of the individual patients were synthesized and used. Seven of the 27 patients demonstrated a CTL response to the residues 88-96 with specific cytotoxic activities higher than 20%. The CTL activities were significantly higher in patients with a low titer of serum HCV RNA than in those with a high titer of serum HCV RNA (P = .0006). Some of the patients that demonstrated a CTL response to the residues 88-96 also demonstrated a CTL response to a newly identified HLA B44-restricted CTL epitope or a known HLA A11-restricted CTL epitope or both. No apparent association was observed between the CTL response and the stage of disease, or between the CTL response and the grade of necroinflammatory activity. The results suggest that the HLA B44-restricted CTLs together with other HCV-specific CTLs may inhibit the outgrowth of HCV and that high-titer infection with HCV may suppress the CTL responses.
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