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Over the past year, an unexpected surge in human monkeypox (hMPX) cases has been observed. This outbreak differs from previous ones, displaying distinct epidemiological characteristics and transmission patterns, believed to be influenced by a newly emerging monkeypox virus (MPXV) lineage. Notably, this emerging MPXV lineage has exhibited several non-synonymous mutations, some of which are linked to immunomodulatory activities and antigenic characteristics that aid in host detection. However, specific treatments or vaccines for human monkeypox are currently lacking. Hence, we aim to develop a multi-epitope mRNA vaccine by using immunoinformatics approaches against the MPXV, particularly its emerging variants. Six proteins (A29L, A35R, B6R, M1R, H3L, and E8L) were chosen for epitope and mutation site identification. Seventeen top-performing epitopes and eight epitopes containing mutation sites were selected and combined with adjuvants, the PADRE sequence, and linkers for vaccine development. The molecular and physical properties of the designed vaccine (WLmpx) were favorable. Immunological characteristics of WLmpx were assessed through molecular docking, molecular dynamics (MD) simulations, and immune simulations. Finally, the vaccine sequence was utilized to formulate an mRNA-based vaccine. The informatics-based predicted results indicated that the designed vaccine exhibits significant potential in eliciting high-level humoral and cellular immune responses, but further validation through and vitro studies is warranted.
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http://dx.doi.org/10.1080/07391102.2024.2325109 | DOI Listing |
J Genet Eng Biotechnol
September 2025
School of Life Sciences and Technology, Institut Teknologi Bandung, Jl. Ganesa No. 10, Bandung 40132, Indonesia; Biosciences and Biotechnology Research Centre, Institut Teknologi Bandung, Jl. Ganesa No. 10, Bandung, 40132, Indonesia. Electronic address:
Background: Despite the decreasing cases, SARS-CoV-2, with its endemic status, still threatens public health, and developing a variant-proof vaccine could be a promising strategy to prevent future infection. In this study, utilizing immunoinformatics and reverse vaccinology, we aimed to develop a multi-epitope mRNA vaccine with high population coverage, targeting multiple variants of SARS-CoV-2.
Methods: To design a multivariant vaccine, 20,567 sequences consisting of all SARS-CoV-2's variants of concern whole genome were retrieved.
Sci Rep
August 2025
Department of Clinical Laboratory, The First Affiliated Hospital of Xinjiang Medical University, No. 393, Xinyi Road, Urumqi, 830011, Xinjiang, China.
Brucellosis is a zoonotic disease caused by bacteria of the Brucella genus. This study investigates the development of a multi-epitope mRNA vaccine aimed at combating Brucella infections. The approach involves selecting the architecture of the pathogenic type IV secretion system (T4SS) of Brucella using bioinformatics tools and reverse vaccinology methodologies.
View Article and Find Full Text PDFSci Rep
August 2025
Research laboratory for Epidemiology and immunogenetics of viral infections (LR14SP02), Sahloul University Hospital, University of Sousse, Sousse, Tunisia.
The current research investigated the development of a multi-epitope mRNA vaccine against the rabies virus on the basis of viral proteomes via the use of bioinformatic tools and reverse vaccinology. The aim of this study was to address the limitations of the currently available rabies vaccine by eliciting strong and long-lasting humoral and cellular immune responses. The cytotoxic T lymphocytes (CTLs), helper T lymphocytes (HTLs), and linear B-cell epitopes (LBLs) were mapped and prioritized from four top-ranking vaccine targets (nucleoprotein, phosphoprotein, matrix, and glycoprotein) that were highly antigenic, nonallergenic, nontoxic, and nonhuman homologs.
View Article and Find Full Text PDFInt J Biol Macromol
August 2025
Department of Microbiology, Faculty of Medicine, Ilam University of Medical Sciences, Ilam, Iran.; Clinical Microbiology Research Center, Ilam University of Medical Sciences, Ilam, Iran.. Electronic address:
Comput Biol Med
September 2025
Department of Medical Biotechnology, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences, Shiraz, Iran; Shiraz Institute for Cancer Research, School of Medicine, Shiraz University of Medical Science, Shiraz, Iran. Electronic address:
Along with the recent outbreak of monkeypox (MPOX), there are worries about other outbreaks of the poxvirus genus that threaten global public health. Until now, although there are no specific vaccines for MPOXV, there are no comprehensive vaccines for all dangerous poxviruses. This research utilizes immunoinformatics and structural vaccinology methodologies to develop a multi-epitope mRNA vaccine targeting variola virus (VARV), vaccinia virus (VACV), monkeypox virus (MPOXV), and cowpox virus (CPXV), which are four pathogenic orthopoxviruses (OPV).
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