Development of recombinant proteins for vaccine candidates against serotypes O and A of Foot-and-Mouth Disease virus in Bangladesh.

Access microbiology Pub Date : 2024-06-24 eCollection Date: 2024-01-01 DOI:10.1099/acmi.0.000713.v4
Salma Akter, M Shaminur Rahman, M Rafiul Islam, Masuda Akther, Humaira Anjume, Mafruha Marjia, Md Mizanur Rahaman, M Anwar Hossain, Munawar Sultana
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Abstract

Frequent vaccine failure leading to recurrent outbreaks of Foot-and-Mouth Disease (FMD) in livestock populations necessitates the development of a customizable vaccine platform comprising potential antigenic determinants of circulating lineages of FMD viruses. Artificially designed, chimaeric protein-based recombinant vaccines are novel approaches to combat the phylogenetically diverse FMD Virus (FMDV) strains. Among seven recognized serotypes, only serotypes O and A are dominantly circulating in Bangladesh and neighbouring countries of Asia, where transboundary transmission, recurrent outbreaks and emergence of novel lineages of FMDV are highly prevalent. The objective of this study was to develop multi-epitope recombinant proteins, procuring immunogenicity against circulating diverse genotypes of FMDV serotypes O and A. Two chimaeric proteins, named B1 (41.0 kDa) and B3 (39.3 kDa), have been designed to incorporate potential B-cell and T-cell epitopes selected from multiple FMDV strains, including previously reported and newly emerged sub-lineages. After expression, characterization and immunization of guinea pigs with a considerable antigen load of B1 and B3 followed by serological assays revealed the significant protective immunogenicity, developed from the higher (100 µg) doses of both antigens, against most of the currently prevalent serotype O and A strains of FMDV. The efficient expression, antigenic stability, and multivalent immunogenic potency of the chimaeric proteins strongly indicate their credibility as novel vaccine candidates for existing serotypes O and A of FMDV in Bangladesh and surrounding territories.

在孟加拉国开发针对口蹄疫病毒血清型 O 和 A 的候选疫苗重组蛋白。
由于疫苗经常失效,导致口蹄疫(FMD)在牲畜群体中反复爆发,因此有必要开发一种可定制的疫苗平台,其中包括口蹄疫病毒循环系的潜在抗原决定因子。人工设计、基于嵌合体蛋白的重组疫苗是对抗系统发育多样的口蹄疫病毒 (FMDV) 株系的新方法。在公认的七种血清型中,只有 O 型和 A 型血清型主要在孟加拉国和亚洲邻国流行,在这些国家,口蹄疫病毒的跨境传播、反复爆发和新品系的出现非常普遍。本研究的目的是开发多表位重组蛋白,以获得针对流行的 FMDV 血清型 O 和 A 的不同基因型的免疫原性。我们设计了两种嵌合蛋白,分别命名为 B1(41.0 kDa)和 B3(39.3 kDa),以整合从多个 FMDV 株系(包括以前报道的和新出现的亚系)中选择的潜在 B 细胞和 T 细胞表位。在对豚鼠进行大量 B1 和 B3 抗原的表达、特征描述和免疫后,再进行血清学检测,结果表明这两种抗原的较高剂量(100 µg)对目前流行的大多数口蹄疫病毒血清型 O 和 A 株具有显著的保护性免疫原性。奇异蛋白的高效表达、抗原稳定性和多价免疫原性有力地表明,它们是孟加拉国及周边地区现有 O 型和 A 型口蹄疫病毒血清型的新型候选疫苗。
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