Immunoinformatics-based multi-epitope containing fused polypeptide vaccine design against visceral leishmaniasis with high immunogenicity and TLR binding

表位 免疫原性 抗原性 免疫系统 生物 肽疫苗 内脏利什曼病 杜氏利什曼原虫 病毒学 抗体 免疫学 利什曼病 化学
作者
Pawan Kumar,Prakash Kumar,Ashish Shrivastava,Mukhtar Ahmad Dar,Kiran Bharat Lokhande,Nidhi Singh,Ashutosh Singh,V. Ravichandiran,Debabrata Mandal
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:253 (Pt 8): 127567-127567 被引量:16
标识
DOI:10.1016/j.ijbiomac.2023.127567
摘要

Visceral leishmaniasis (VL) is the most lethal among all leishmaniasis diseases and remains categorized as a neglected tropical disease (NTD). This study aimed to develop a peptide-based multi-epitope vaccine construct against VL using immunoinformatics methodologies. To achieve this, four distinct proteins were screened to identify peptides consisting of 9–15 amino acids with high binding affinity to toll-like receptors (TLRs), strong antigenicity, low allergenicity, and minimal toxicity. The resulting multi-epitope vaccine construct was fused in a tandem arrangement with appropriate linker peptides and exhibited superior properties related to cytotoxic T lymphocytes (CTLs), helper T lymphocytes (HTLs), and B-cell epitopes. Subsequently, a three-dimensional (3D) model of the vaccine construct was generated, refined, and validated for structural stability and immune response capabilities. Molecular docking and simulations confirmed the vaccine construct's stability and binding affinities with TLRs, with TLR4 displaying the highest binding affinity, followed by TLR2 and TLR3. Additionally, simulations predicted robust cellular and humoral antibody-mediated immune responses elicited by the designed vaccine construct. Notably, this vaccine construct includes proteins from various pathways of Leishmania donovani (LD), which have not been previously utilized in VL vaccine design. Thus, this study opens new avenues for the development of vaccines against diverse protozoan diseases.
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