Yu Ruisong, Dong Shijuan, Chen Bingqing, Si Fusheng, Li Chunhua
Institute of Animal Husbandry and Veterinary Medicine, Shanghai Key Laboratory of Agricultural Genetics and Breeding, Shanghai Engineering Research Center of Breeding Pig, Shanghai Academy of Agricultural Sciences (SAAS), Shanghai 201106, China.
Vaccines (Basel). 2024 May 19;12(5):557. doi: 10.3390/vaccines12050557.
Porcine epidemic diarrhea virus (PEDV) is the etiology of porcine epidemic diarrhea (PED), a highly contagious digestive disease in pigs and especially in neonatal piglets, in which a mortality rate of up to 100% will be induced. Immunizing pregnant sows remains the most promising and effective strategy for protecting their neonatal offspring from PEDV. Although half a century has passed since its first report in Europe and several prophylactic vaccines (inactivated or live attenuated) have been developed, PED still poses a significant economic concern to the swine industry worldwide. Hence, there is an urgent need for novel vaccines in clinical practice, especially live attenuated vaccines (LAVs) that can induce a strong protective lactogenic immune response in pregnant sows. Reverse genetic techniques provide a robust tool for virological research from the function of viral proteins to the generation of rationally designed vaccines. In this review, after systematically summarizing the research progress on virulence-related viral proteins, we reviewed reverse genetics techniques for PEDV and their application in the development of PED LAVs. Then, we probed into the potential methods for generating safe, effective, and genetically stable PED LAV candidates, aiming to provide new ideas for the rational design of PED LAVs.
猪流行性腹泻病毒(PEDV)是猪流行性腹泻(PED)的病原体,PED是一种在猪尤其是新生仔猪中具有高度传染性的消化系统疾病,可导致高达100%的死亡率。给怀孕母猪免疫仍然是保护其新生后代免受PEDV感染的最有前景和最有效的策略。尽管自欧洲首次报告以来已经过去了半个世纪,并且已经开发了几种预防性疫苗(灭活疫苗或减毒活疫苗),但PED仍然给全球养猪业带来重大的经济问题。因此,临床实践中迫切需要新型疫苗,尤其是能够在怀孕母猪中诱导强烈保护性泌乳免疫反应的减毒活疫苗(LAV)。反向遗传学技术为从病毒蛋白功能到合理设计疫苗的病毒学研究提供了强大的工具。在这篇综述中,我们在系统总结了与毒力相关的病毒蛋白的研究进展后,回顾了PEDV的反向遗传学技术及其在PED减毒活疫苗开发中的应用。然后,我们探讨了生成安全、有效和基因稳定的PED减毒活疫苗候选株的潜在方法,旨在为PED减毒活疫苗的合理设计提供新思路。