Shanghai Institute of Immunity and Infection, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai, People's Republic of China.
Shanghai Institute of Infectious Disease and Biosecurity, Fudan University, Shanghai, People's Republic of China.
Emerg Microbes Infect. 2024 Dec;13(1):2337665. doi: 10.1080/22221751.2024.2337665. Epub 2024 Apr 5.
Coxsackievirus B4 (CVB4) is associated with a range of acute and chronic diseases such as hand, foot, and mouth disease, myocarditis, meningitis, pancreatitis, and type 1 diabetes, affecting millions of young children annually around the world. However, no vaccine is currently available for preventing CVB4 infection. Here, we report the development of inactivated viral particle vaccines for CVB4. Two types of inactivated CVB4 particles were prepared from CVB4-infected cell cultures as vaccine antigens, including F-particle (also called mature virion) consisting of VP1, VP3, VP2, and VP4 subunit proteins, and E-particle (also called empty capsid) which is made of VP1, VP3, and uncleaved VP0. Both the inactivated CVB4 F-particle and E-particle were able to potently elicit neutralizing antibodies in mice, despite slightly lower neutralizing antibody titres seen with the E-particle vaccine after the third immunization. Importantly, we demonstrated that passive transfer of either anti-F-particle or anti-E-particle sera could completely protect the recipient mice from lethal CVB4 challenge. Our study not only defines the immunogenicity and protective efficacy of inactivated CVB4 F-particle and E-particle but also reveals the central role of neutralizing antibodies in anti-CVB4 protective immunity, thus providing important information that may accelerate the development of inactivated CVB4 vaccines.
柯萨奇病毒 B4 (CVB4) 与一系列急性和慢性疾病有关,如手足口病、心肌炎、脑膜炎、胰腺炎和 1 型糖尿病,每年在全球范围内影响数百万幼儿。然而,目前尚无预防 CVB4 感染的疫苗。在这里,我们报告了用于 CVB4 的灭活病毒粒子疫苗的开发。从 CVB4 感染的细胞培养物中制备了两种类型的灭活 CVB4 颗粒作为疫苗抗原,包括由 VP1、VP3、VP2 和 VP4 亚基蛋白组成的 F 颗粒(也称为成熟病毒),以及由 VP1、VP3 和未切割的 VP0 组成的 E 颗粒(也称为空衣壳)。尽管在第三次免疫接种后,E 颗粒疫苗产生的中和抗体滴度略低,但灭活的 CVB4 F 颗粒和 E 颗粒均能在小鼠中强烈引发中和抗体。重要的是,我们证明,被动转移抗 F 颗粒或抗 E 颗粒血清可以完全保护受体小鼠免受致命的 CVB4 攻击。我们的研究不仅定义了灭活的 CVB4 F 颗粒和 E 颗粒的免疫原性和保护效力,还揭示了中和抗体在抗 CVB4 保护免疫中的核心作用,从而提供了可能加速开发灭活 CVB4 疫苗的重要信息。