ArticleJournal of cellular and molecular medicine2025
A Mutation-Based Reverse Vaccinology Approach Considering Variability in Epitopes to Combat Multi-Strains: A Study Using Glycoprotein of LASV.
Article in Journal of cellular and molecular medicine, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Proteome conserved multi-epitope-based vaccine construct against Nipah virus.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Computational Design of a Broad-Spectrum Multi-Epitope mRNA Vaccine Candidate for Mammarenaviruses.Applied biochemistry and biotechnology · 2026Article
- Computational structural dynamics and immunoinformatic analysis of EIEC IpaHMolecular diversity · 2026Article
- Designing potent and immunogenic epitope based peptide vaccine against all serotypes of DENV via structural, physico-chemical and immunoinformatics-based approaches.Scientific reports · 2026Article
- Integrative immunoinformatics and molecular modeling approaches for the rational design and in silico validation of a multi-epitope vaccine candidate against human herpesvirus 7.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Immunoinformatic design of a multi-epitope vaccine candidate targeting multidrug-resistant Pseudomonas aeruginosa.BMC immunology · 2026Article
- Computational immunoinformatics and molecular modeling approaches for designing a multi-epitope vaccine against Babesia microti.BMC microbiology · 2026Article
- In silico design and immunoinformatics assessment of a multiepitope vaccine targeting borealpox virus.Scientific reports · 2026Article
- A Mutation-Based Reverse Vaccinology Approach Considering Variability in Epitopes to Combat Multi-Strains: A Study Using Glycoprotein of LASV.Journal of cellular and molecular medicine · 2025Article
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Authors and funding
8 authors.
Funding
Abstract
Lassa virus (LASV) remains a persistent threat to public health, and to combat this, various therapeutics have been developed, but their effectiveness is limited due to the virus's strain variability. Therefore, mutation-based reverse vaccinology approaches were implemented to formulate an epitope-based vaccine against the LASV, considering the variability in the glycoprotein. The glycoprotein was examined to screen out the B and T cell epitopes and further examined for the immunodominant epitope activity assessment. These epitopes were mapped with the identified position to introduce variability. 2 LBL (Linear B-cell lymphocyte), 21 MHC-I (Major Histocompatibility Complex Class I), and 8 MHC-II potential epitopes were considered for wild and mutated (based on the mutation mapping). The wild and mutated vaccines were separately constructed, which comprise 545 amino acids in length by adjoining B and T cell epitopes via a specific linker, and also an adjuvant, PADRE epitope, 6xHis-Tag, was incorporated to enhance the effectiveness. The formulated vaccine showed acceptable 3D structure quality (most favoured of wild: 91.5% and mutated: 91%) and high population coverage, i.e., 94%. The docking examination of wild and mutated vaccine with toll-like receptor 2 (TLR-2) revealed strong binding affinity, that is, -11.1 and -19.9 kcal/mol, and remarkable stability over 100 ns simulation based on the RMSD, RMSF. The immune simulation and in silico-assisted cloning demonstrated a robust immune response and a remarkable expression in Escherichia coli system based on the GC% (wild; 57.51 and mutated; 57.57) and similar codon adaptive index value, that is, 0.93. The integrated approach will certainly aid in designing a mutation-based epitope-based vaccine that may counter different strains of LASV.
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Registered trials
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