The results highlight the potential of the proposed multi-epitope construct as a promising vaccine candidate against HCMV, however, experimental validation is essential to confirm its immunogenicity, safety, and translational applicability.
Abstract
Human cytomegalovirus (CMV) is a globally widespread pathogen associated with significant morbidity in immunocompromised individuals. Despite its clinical importance, no licensed vaccine is currently available. This study aimed to design a rational multi-epitope vaccine candidate targeting CMV using an integrative approach combining immunoinformatics and structural biology. Viral proteins were screened to identify epitopes with high affinity for B cells, cytotoxic T cells (CTLs), and helper T cells (HTLs) using the Immune Epitope Database (IEDB). Selected epitopes were filtered according to their antigenicity and toxicity and then assembled into a chimeric construct incorporating an immunostimulatory adjuvant. The designed vaccine was evaluated for its physicochemical properties, validated by Ramchandran and ERRAT analyses. Molecular modeling demonstrated strong and stable interactions with key innate immunity receptors, including TLR7 and TLR9, interactions confirmed by molecular dynamics simulations. In silico immune simulation predicted a robust and durable immune response, characterized by high levels of IgM and IgG, as well as significant activation of CD4 + and CD8 + lymphocytes and innate immunity components. These results highlight the potential of the proposed multi-epitope construct as a promising vaccine candidate against HCMV. However, experimental validation is essential to confirm its immunogenicity, safety, and translational applicability.
This study presents a structurally optimized and validated multiepitope vaccine candidate against the emerging Batai orthobunyavirus, identifying a promising vaccine candidate for further investigation; however, its immunogenicity, safety, and protective efficacy before further vaccine development can be considered.
M. A. Alwaili, N. Al‐Hoshani, Huda A Alqahtani et al.· Pharmaceuticals· 0 citations
The proposed multi-epitope vaccine shows promising immunological and structural properties, supporting its potential against S. typhimurium, pending experimental validation.
Mohammed Naveez Valathoor, A. P. Rajan· Scientific Reports· 0 citations
The two proposed multi-epitope mRNA vaccine constructs showed promising immunogenic, safety, and structural properties in silico, highlighting their potential as candidate vaccines against HMPV.
E. K. Oladipo, James Akinwumi Ogunniran, Oluwaseyi Samuel Akinpelu et al.· Discover Immunity· 0 citations
The designed HA-based multi-epitope vaccine demonstrated promising immunogenicity, safety, structural stability, and broad population coverage in silico, and its potential as a vaccine candidate against Influenza A (H1N1) is supported.
Roshni Khan, Salman Khan· INTERNATIONAL JOURNAL OF APP...· 0 citations
The rationally designed multi-epitope vaccine demonstrates robust theoretical potential to elicit comprehensive, long-lasting immunity in humans, although its safety and effectiveness require additional experimental validation.
Chenchen Yi, Yu Shen, Ye Luo et al.· Frontiers in Cellular and In...· 0 citations
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