Yan Liyuan, Guo Jing, Zhong Yinan, Wei Jiangbo, Wang Zejun
Wuhan Institute of Biological Products Co., Ltd., No. 1 Huangjin Industrial Park Road, Wuhan 430207, China.
National Engineering Technology Research Center for Combined Vaccines, Wuhan 430207, China.
Viruses. 2025 May 22;17(6):742. doi: 10.3390/v17060742.
Members of the family employs two distinct transmission modes: free virion release and cell-to-cell transmission. The latter enables immune evasion through multiple mechanisms, facilitating infections in skin, mucosa, and neural tissues. This review synthesizes current knowledge on human herpesvirus cell-to-cell transmission mechanisms, including syncytium formation, tight junction exploitation, exosomal transfer, and tunneling nanotube utilization. We analyze how these strategies enhance infection efficiency, evade immune surveillance, and augment pathogenicity. Furthermore, we discuss recent intervention strategies targeting cell-to-cell transmission, including the development of monoclonal antibodies, antiviral drugs, and vaccines. These inights provide a theoretical foundation for developing novel approaches against human herpesvirus infections.
游离病毒粒子释放和细胞间传播。后者能够通过多种机制实现免疫逃逸,促进在皮肤、黏膜和神经组织中的感染。本综述综合了关于人类疱疹病毒细胞间传播机制的现有知识,包括合胞体形成、紧密连接利用、外泌体转移和隧道纳米管利用。我们分析了这些策略如何提高感染效率、逃避免疫监视并增强致病性。此外,我们讨论了针对细胞间传播的近期干预策略,包括单克隆抗体、抗病毒药物和疫苗的开发。这些见解为开发针对人类疱疹病毒感染的新方法提供了理论基础。