Department of Aquatic Animal Health, ICAR- Central Institute of Fisheries Education, Mumbai, India.
Department of Aqualife Medicine, Chonnam National University, Gwangju, Republic of Korea.
Methods Mol Biol. 2022;2411:147-173. doi: 10.1007/978-1-0716-1888-2_9.
Fish health management has become a critical component of disease control and is invaluable for improved harvests and sustainable aquaculture. Vaccination is generally accepted as the most effective prophylactic measure for fish disease prevention, on environmental, social, and economic grounds. Although the historical approach for developing fish vaccines was based on the principle of Louis Pasteur's "isolate, inactivate and inject," but their weak immunogenicity and low efficacies in many cases, have shifted the focus of fish vaccine development from traditional to next-generation technologies. However, before any fish vaccine can be successfully commercialized, several hurdles need to be overcome regarding the production cost, immunogenicity, effectiveness, mode of administration, environmental safety, and associated regulatory concerns. In this context, the chapter summarises the basic aspects of fish vaccination such as type of vaccine, modalities of vaccine delivery, the immunological basis of fish immunization as well as different challenges associated with the development process and future opportunities.
鱼类健康管理已成为疾病控制的重要组成部分,对于提高收成和可持续水产养殖具有重要意义。从环境、社会和经济角度来看,疫苗接种通常被认为是预防鱼类疾病最有效的预防性措施。尽管开发鱼类疫苗的历史方法基于路易斯·巴斯德(Louis Pasteur)的“分离、灭活和注射”原则,但在许多情况下,它们的免疫原性较弱,效果较低,这使得鱼类疫苗的开发重点从传统技术转向了下一代技术。然而,在任何鱼类疫苗能够成功商业化之前,都需要克服一些障碍,包括生产成本、免疫原性、有效性、给药方式、环境安全性和相关监管问题。在这种情况下,本章总结了鱼类免疫接种的基本方面,如疫苗类型、疫苗传递方式、鱼类免疫的免疫学基础以及与开发过程相关的不同挑战和未来机遇。