Hoang Hang Thi Thu, Nguyen Tra Thi, Pham Van Thi, Chu Tam Thanh, Le My Thi Tra, Doan Linh Nhat, Nguyen Hien Thi Thu, Le Xuyen Thi Kim, Doan Huong Thi Thanh, Chu Ha Hoang, Pham Ngoc Bich
Institute of Biotechnology (IBT), Vietnam Academy of Science and Technology (VAST), Hanoi, 100000, Vietnam.
Graduate University of Science and Technology (GUST), VAST, Hanoi, 100000, Vietnam.
Vet Res Commun. 2025 May 13;49(4):196. doi: 10.1007/s11259-025-10755-3.
Infectious bronchitis virus (IBV) causes an acute respiratory disease in chickens of all ages, and is an economic burden on the global poultry industry. In severe cases, this virus can spread from the respiratory tract to urinary and reproductive organs, leading to kidney damage, poor egg quality, and high mortality rate of chickens. Among IBV glycoproteins, spike (S) is the major determinant of viral attachment to host receptors and induction of neutralizing antibodies. Rapid mutations were found within the S gene of numerous IBV strains presenting in multiple geographical locations. Since the early detection of IBV in the 1930s, no single control strategy has so far shown high efficacy in protecting chickens. The aim of this investigation was therefore to develop a novel S-subunit vaccine to prevent this disease. Using a design approach of Computationally Optimized Broadly Reactive Antigen (COBRA) and the Nicotiana benthamiana transient expression system, we have successfully generated a recombinant S protein comprising the most consensus amino acids of IBV strains circulating in Vietnam and surrounding areas. Importantly, our results showed that the plant-derived protein was able to induce a strong immune response in chickens with significantly high expression levels of IFN-γ, GZM-A, CD4, CD8 mRNAs in the peripheral blood. Remarkable titers of IgY specific antibodies were stably observed over a 5-week period post immunization by COBRA-S, which was in agreement with the reduction of clinical signs after virus challenge. This study contributes a potential direction to vaccine development coping with new IBV outbreaks in the future.
传染性支气管炎病毒(IBV)可导致各年龄段鸡只患急性呼吸道疾病,是全球家禽业的一项经济负担。在严重情况下,这种病毒可从呼吸道传播至泌尿和生殖器官,导致肾脏损伤、蛋品质下降以及鸡只死亡率升高。在IBV糖蛋白中,刺突(S)蛋白是病毒附着于宿主受体并诱导中和抗体产生的主要决定因素。在多个地理位置出现的众多IBV毒株的S基因内发现了快速突变。自20世纪30年代早期发现IBV以来,到目前为止尚无单一的防控策略在保护鸡只方面显示出高效性。因此,本研究的目的是开发一种新型S亚单位疫苗来预防这种疾病。利用计算优化的广谱反应性抗原(COBRA)设计方法和本氏烟草瞬时表达系统,我们成功构建了一种重组S蛋白,其包含在越南及周边地区流行的IBV毒株中最具一致性的氨基酸。重要的是,我们的结果表明,这种植物源蛋白能够在鸡只中诱导强烈的免疫反应,外周血中IFN-γ、GZ M-A、CD4、CD8 mRNA的表达水平显著升高。通过COBRA-S免疫后,在5周的时间内稳定观察到了显著的IgY特异性抗体效价,这与病毒攻毒后临床症状的减轻相一致。本研究为未来应对新出现的IBV疫情的疫苗开发提供了一个潜在的方向。