Authors
Olga V Masalova, Ekaterina I Lesnova, Vyacheslav V Kozlov, Vladimir T Valuev-Elliston, Kristina Yu Permyakova, Natalya E Fedorova, Tatyana N Nikolaeva, Alexander V Pronin, Alexander V Ivanov, Alla A Kushch
Published in
Vaccines. Volume 14. Issue 7. Jul 21, 2026. Epub Jul 21, 2026.
Abstract
Global elimination of hepatitis C virus (HCV) infection requires not only direct-acting antivirals (DAAs) but also the development of a highly effective prophylactic and/or therapeutic vaccine. Background/Objectives: Our aim was to optimize the composition of the candidate vaccine against HCV by combining recombinant non-structural proteins and a DNA construct with a complex adjuvant. Methods: C57BL/6 and DBA/2J mice were immunized three times at 2-week intervals using different schemes. The viral antigens consisted of a mixture of NS3, NS5A, and NS5B proteins and/or recombinant DNA expressing NS3-NS5B polyprotein. As adjuvants, a complex adjuvant, a mixture of Polymuramil® and Pyrogenalum® (NOD1/NOD2 and TLR-4 agonists), or a CpG ODN adjuvant (TLR-9 agonist) were used. Results: The most efficient regimen was three subcutaneous administrations of the combined DNA, recombinant protein components, and a new complex adjuvant. This scheme elicited a robust immune response, characterized by high antibody titers, enhanced antigen-specific lymphocyte proliferation, and significant interferon-gamma (IFN-γ) secretion in both mouse lines. Furthermore, the complex adjuvant outperformed CpG ODN in stimulating both humoral and cellular immunity against the HCV antigens. The vaccine composition stimulated the formation of CD4+ memory T cells and decreased the relative frequences of suppressive Treg and MDSCs. Conclusions: The presented candidate vaccine induces a strong immune response to HCV proteins. The next step would be to validate the protective effect in cell culture and animal models. This would one the path to preclinical studies of this vaccine composition.
PMID:
42506677
Bibliographic data and abstract were imported from PubMed on 27 Jul 2026.
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