Wang Haoran, Tian Jiaxin, Zhao Jing, Zhao Ye, Yang Huiming, Zhang Guozhong
National Key Laboratory of Veterinary Public Health Security, College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.
Key Laboratory of Animal Epidemiology of the Ministry of Agriculture, College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.
Vaccines (Basel). 2024 Jun 6;12(6):630. doi: 10.3390/vaccines12060630.
Inactivated and live attenuated vaccines are the mainstays of preventing viral poultry diseases. However, the development of recombinant DNA technology in recent years has enabled the generation of recombinant virus vector vaccines, which have the advantages of preventing multiple diseases simultaneously and simplifying the vaccination schedule. More importantly, some can induce a protective immune response in the presence of maternal antibodies and offer long-term immune protection. These advantages compensate for the shortcomings of traditional vaccines. This review describes the construction and characterization of primarily poultry vaccine vectors, including fowl poxvirus (FPV), fowl adenovirus (FAdV), Newcastle disease virus (NDV), Marek's disease virus (MDV), and herpesvirus of turkey (HVT). In addition, the pathogens targeted and the immunoprotective effect of different poultry recombinant virus vector vaccines are also presented. Finally, this review discusses the challenges in developing vector vaccines and proposes strategies for improving immune efficacy.
灭活疫苗和减毒活疫苗是预防禽类病毒性疾病的主要手段。然而,近年来重组DNA技术的发展使得重组病毒载体疫苗得以产生,这类疫苗具有同时预防多种疾病以及简化免疫程序的优点。更重要的是,有些重组病毒载体疫苗能在母源抗体存在的情况下诱导产生保护性免疫应答,并提供长期的免疫保护。这些优点弥补了传统疫苗的不足。本综述描述了主要的禽类疫苗载体的构建与特性,包括禽痘病毒(FPV)、禽腺病毒(FAdV)、新城疫病毒(NDV)、马立克氏病病毒(MDV)和火鸡疱疹病毒(HVT)。此外,还介绍了不同禽类重组病毒载体疫苗所针对的病原体及其免疫保护效果。最后,本综述讨论了开发载体疫苗所面临的挑战,并提出了提高免疫效力的策略。