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Published on: May 6, 2015
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.
Abstract:
Hepatitis C virus (HCV) is a major worldwide cause of acute and chronic hepatitis, cirrhosis, and hepatocellular carcinoma. The development of vaccines against HCV have been complicated by the high variability of the envelope region, and it is likely that the cellular immune responses to viral structural proteins may be important for eradicating persistent viral infection. Recently, it was reported that the injection into muscle cells of plasmids encoding viral genes resulted in the generation of strong cellular immune responses. We constructed vectors that express the highly conserved HCV core gene. In this regard, the pHCV 2-2 construct contained the entire HCV core region and pHCV 4-2 contained both the 5' noncoding region and the core gene. Cellular expression of HCV core protein was assessed following transfection into human and murine cell lines, and higher intracellular levels of the 21-kd core protein were observed with pHCV 2-2. These HCV core DNA constructs were used to immunize BALB/c mice and produced low-level anti-HCV core humoral immune responses. To assess cytotoxic T-lymphocyte (CTL) activity generated in vivo, a cloned syngeneic SP2/O myeloma cell line constitutively expressing HCV core protein was established and inoculated into BALB/c mice to produce growth of plasmacytomas. Strong CTL activity was generated because the tumor size and weight in pHCV 2-2-immunized mice were remarkably reduced compared with mice injected with mock DNA. Spontaneous CTL activity was also exhibited by splenocytes in an in vitro cytotoxicity assay. These investigations demonstrate that plasmid constructs expressing HCV core protein generate strong CTL activity, as assessed both in vivo and in vitro, and are promising candidates as antiviral agents.
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