Chen Taoran, Kong Dexin, Hu Xiaolong, Gao Yinze, Lin Shaorong, Liao Ming, Fan Huiying
College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, China.
Key Laboratory of Zoonosis Prevention and Control of Guangdong Province, Guangzhou 510642, China.
Vaccines (Basel). 2023 Aug 2;11(8):1318. doi: 10.3390/vaccines11081318.
H7N9 avian influenza virus (AIV) has caused huge losses in the poultry industry and impacted human public health security, and still poses a potential threat. Currently, immune prevention and control of avian influenza relies on traditional inactivated vaccines; however, they have some limitations and genetically engineered avian influenza subunit vaccines may be potential candidate vaccines. In this study, a T169A mutation in the HA protein derived from H7N9 AIV A/Chicken/Guangdong/16876 (H7N9-16876) was generated using the baculovirus expression system (BVES). The results showed that the mutant (HAm) had significantly increased thermostability compared with the wild-type HA protein (HA-WT). Importantly, immunizing chickens with HAm combined with ISA 71VG elicited higher cross-reactive hemagglutination inhibition (HI) antibody responses and cytokine (IFN-γ and IL-4) secretion. After a lethal challenge with heterologous H7N9 AIV, the vaccine conferred chickens with 100% (10/10) clinical protection and effectively inhibited viral shedding, with 90% (9/10) of the chickens showing no virus shedding. The thermostability of HAm may represent an advantage in practical vaccine manufacture and application. In general, the HAm generated in this study represents a promising subunit vaccine candidate for the prevention and control of H7N9 avian influenza.
H7N9禽流感病毒(AIV)给家禽业造成了巨大损失,影响了人类公共卫生安全,并且仍然构成潜在威胁。目前,禽流感的免疫预防和控制依赖于传统的灭活疫苗;然而,它们存在一些局限性,而基因工程禽流感亚单位疫苗可能是潜在的候选疫苗。在本研究中,利用杆状病毒表达系统(BVES)对源自H7N9 AIV A/Chicken/Guangdong/16876(H7N9-16876)的HA蛋白进行了T169A突变。结果表明,与野生型HA蛋白(HA-WT)相比,突变体(HAm)的热稳定性显著提高。重要的是,用HAm与ISA 71VG联合免疫鸡可引发更高的交叉反应血凝抑制(HI)抗体反应和细胞因子(IFN-γ和IL-4)分泌。在用异源H7N9 AIV进行致死性攻击后,该疫苗给予鸡100%(10/10)的临床保护,并有效抑制病毒脱落,90%(9/10)的鸡未出现病毒脱落。HAm的热稳定性在实际疫苗生产和应用中可能具有优势。总体而言,本研究中产生的HAm是一种用于预防和控制H7N9禽流感的有前景的亚单位疫苗候选物。