Expression and immune response to hepatitis C virus core DNA-based vaccine constructs

K Tokushige1, T Wakita, C Pachuk

  • 1Molecular Hepatology Laboratory, Massachusetts General Hospital, Cancer Center, Charleston, MA 02129, USA.

Insights

Hepatitis C virus (HCV) DNA constructs expressing the core gene generated strong cytotoxic T-lymphocyte (CTL) activity. This cellular immune response shows promise for developing new antiviral therapies against persistent HCV infections.

Area of Science:

  • Immunology
  • Virology
  • Molecular Biology

Background:

  • Hepatitis C virus (HCV) causes significant global liver disease, including cancer.
  • Developing an effective HCV vaccine is challenging due to viral envelope variability.
  • Cellular immune responses targeting viral structural proteins may be key to clearing persistent infections.

Purpose of the Study:

  • To construct and evaluate DNA vectors expressing the conserved HCV core gene.
  • To assess the cellular immune response, specifically cytotoxic T-lymphocyte (CTL) activity, generated by these vectors.
  • To determine the potential of these constructs as antiviral agents.

Main Methods:

  • Constructed DNA vectors (pHCV 2-2 and pHCV 4-2) expressing the HCV core gene.
  • Transfected vectors into human and murine cell lines to assess core protein expression.
  • Immunized BALB/c mice with vectors and evaluated humoral and CTL responses.
  • Established a myeloma cell line expressing HCV core protein for in vivo and in vitro CTL assays.

Main Results:

  • The pHCV 2-2 construct demonstrated higher intracellular expression of the HCV core protein.
  • Immunization with HCV core DNA constructs induced low-level humoral responses.
  • Significant CTL activity was observed in vivo, evidenced by reduced tumor size and weight in immunized mice.
  • Splenocytes from immunized mice showed spontaneous CTL activity in in vitro assays.

Conclusions:

  • Plasmid constructs expressing the HCV core gene effectively generate strong CTL activity.
  • These findings highlight the potential of HCV core DNA vaccines as promising antiviral agents.
  • Targeting the conserved HCV core protein via cellular immunity offers a potential strategy for combating HCV infection.

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