Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia.
Biological Security and Sustainability Research Interest Group (BIOSES), Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia.
PeerJ. 2023 Dec 8;11:e16419. doi: 10.7717/peerj.16419. eCollection 2023.
The spread of infectious illnesses has been a significant factor restricting aquaculture production. To maximise aquatic animal health, vaccination tactics are very successful and cost-efficient for protecting fish and aquaculture animals against many disease pathogens. However, due to the increasing number of immunological cases and their complexity, it is impossible to manage, analyse, visualise, and interpret such data without the assistance of advanced computational techniques. Hence, the use of immunoinformatics tools is crucial, as they not only facilitate the management of massive amounts of data but also greatly contribute to the creation of fresh hypotheses regarding immune responses. In recent years, advances in biotechnology and immunoinformatics have opened up new research avenues for generating novel vaccines and enhancing existing vaccinations against outbreaks of infectious illnesses, thereby reducing aquaculture losses. This review focuses on understanding epitope-based vaccine design, the creation of multi-epitope vaccines, the molecular interaction of immunogenic vaccines, and the application of immunoinformatics in fish disease based on the frequency of their application and reliable results. It is believed that it can bridge the gap between experimental and computational approaches and reduce the need for experimental research, so that only wet laboratory testing integrated with in silico techniques may yield highly promising results and be useful for the development of vaccines for fish.
传染病的传播一直是限制水产养殖生产的重要因素。为了最大限度地提高水生动物的健康水平,疫苗接种策略对于保护鱼类和水产养殖动物免受许多病原体的侵害非常成功且具有成本效益。然而,由于免疫病例数量的增加及其复杂性,如果没有先进的计算技术的帮助,就不可能管理、分析、可视化和解释这些数据。因此,免疫信息学工具的使用至关重要,因为它们不仅有助于管理大量数据,而且还极大地有助于针对传染病爆发产生新的免疫反应假设。近年来,生物技术和免疫信息学的进步为开发新型疫苗和增强针对传染病爆发的现有疫苗开辟了新的研究途径,从而减少水产养殖损失。本综述重点关注基于表位的疫苗设计、多表位疫苗的开发、免疫原性疫苗的分子相互作用以及免疫信息学在鱼类疾病中的应用,基于其应用频率和可靠结果。人们相信,它可以弥合实验和计算方法之间的差距,并减少对实验研究的需求,因此,只有将湿实验室测试与计算技术相结合,才能产生非常有前途的结果,并有助于鱼类疫苗的开发。