Department of Virology, Pasteur Institute of Iran, Tehran, Iran.
Department of Virology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.
Arch Virol. 2022 Apr;167(4):1013-1023. doi: 10.1007/s00705-022-05407-9. Epub 2022 Mar 15.
The first-generation, live attenuated rotavirus (RV) vaccines, such as RotaTeq and Rotarix, were successful in reducing the number of RV-induced acute gastroenteritis (AGE) and child deaths globally. However, the low efficacy of these first-generation oral vaccines, coupled with safety concerns, required development of improved RV vaccines. The highly conserved structural protein VP6 is highly immunogenic, and it can generate self-assembled nano-sized structures, including tubes and spheres (virus-like particles; VLPs). Amongst the RV proteins, only VP6 shows these features. Interestingly, VP6-assembled structures, in addition to being highly immunogenic, have several other useful characteristics that could allow them to be used as adjuvants, immunological carriers, and drug-delivery vehicles as well as acting a scaffold for production of valuable nano-biomaterials. This review provides an overview of the self-assembled nano-sized structures of VP6-tubes/VLPs and their various functions.
第一代减毒活轮状病毒(RV)疫苗,如 RotaTeq 和 Rotarix,成功地降低了全球 RV 引起的急性肠胃炎(AGE)和儿童死亡的数量。然而,这些第一代口服疫苗的低功效,加上安全性问题,需要开发改进的 RV 疫苗。高度保守的结构蛋白 VP6 具有高度的免疫原性,它可以产生自我组装的纳米大小的结构,包括管和球(病毒样颗粒;VLPs)。在 RV 蛋白中,只有 VP6 具有这些特征。有趣的是,VP6 组装的结构,除了具有高度的免疫原性外,还有其他一些有用的特性,可以将它们用作佐剂、免疫载体和药物输送载体,并作为生产有价值的纳米生物材料的支架。本综述概述了 VP6-管/VLP 的自组装纳米结构及其各种功能。