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Analysis of HBV-Specific CD4 T-cell Responses and Identification of HLA-DR-Restricted CD4 T-Cell Epitopes Based on a Peptide Matrix
Published on: October 20, 2021
Chimeric hepatitis B virus/hepatitis C virus envelope proteins elicit broadly neutralizing antibodies and constitute
Elodie Beaumont1, Romuald Patient, Christophe Hourioux
1INSERM U966, Université François Rabelais and CHRU de Tours, Tours, France.
Insights
Researchers developed a novel bivalent vaccine candidate targeting both Hepatitis C virus (HCV) and Hepatitis B virus (HBV). This innovative approach utilizes chimeric viral particles to elicit a strong immune response against both hepatotropic viruses.
Area of Science:
- Virology
- Immunology
- Vaccine Development
Background:
- Hepatitis C virus (HCV) infections pose a significant global health challenge, with millions of new cases annually.
- Hepatitis B virus (HBV) infections are preventable via vaccination, leveraging the immunogenicity of its self-assembling envelope protein (S).
Purpose of the Study:
- To develop a prophylactic vaccine against HCV by creating chimeric HBV-HCV envelope proteins.
- To assess the immunogenicity and efficacy of these chimeric particles in preventing both HCV and HBV infections.
Main Methods:
- Constructed chimeric HBV-HCV envelope proteins by replacing HBV S N-terminal transmembrane domain with HCV E1 or E2 transmembrane domains.
- Coassembled chimeric proteins with wild-type HBV S protein into immunogenic subviral particles.
- Immunized New Zealand rabbits with chimeric particles and evaluated antibody response and neutralization capacity against various HCV strains.
Main Results:
- Chimeric particles efficiently coassembled and presented full-length HCV E1 and E2 proteins, forming the E1-E2 heterodimer.
- Immunization induced strong specific antibody responses against both HCV and HBV envelope proteins.
- Generated antibodies neutralized heterologous strains of HCV, and the anti-HBV response was comparable to a commercial HBV vaccine.
Conclusions:
- Developed chimeric HBV-HCV subviral particles as a promising bivalent vaccine candidate.
- These particles demonstrated potential for a prophylactic vaccine against both HCV and HBV.
- Supports further development of bivalent vaccines to prevent initial infection with these hepatotropic viruses.
Unlabelled:
The development of a prophylactic vaccine against hepatitis C virus (HCV) has become an important medical priority, because 3-4 million new HCV infections are thought to occur each year worldwide. Hepatitis B virus (HBV) is another major human pathogen, but infections with this virus can be prevented with a safe, efficient vaccine, based on the remarkable ability of the envelope protein (S) of this virus to self-assemble into highly immunogenic subviral particles. Chimeric HBV-HCV envelope proteins in which the N-terminal transmembrane domain of S was replaced with the transmembrane domain of the HCV envelope proteins (E1 or E2) were efficiently coassembled with the wild-type HBV S protein into subviral particles. These chimeric particles presented the full-length E1 and E2 proteins from a genotype 1a virus in an appropriate conformation for formation of the E1-E2 heterodimer. Produced in stably transduced Chinese hamster ovary cells and used to immunize New Zealand rabbits, these particles induced a strong specific antibody (Ab) response against the HCV and HBV envelope proteins in immunized animals. Sera containing anti-E1 or anti-E2 Abs elicited by these particles neutralized infections with HCV pseudoparticles and cell-cultured viruses derived from different heterologous 1a, 1b, 2a, and 3 strains. Moreover, the anti-hepatitis B surface response induced by these chimeric particles was equivalent to the response induced by a commercial HBV vaccine.
Conclusions:
Our results provide support for approaches based on the development of bivalent HBV-HCV prophylactic vaccine candidates potentially able to prevent initial infection with either of these two hepatotropic viruses.
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