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用于水生动物的生物技术与DNA疫苗。

Biotechnology and DNA vaccines for aquatic animals.

作者信息

Kurath G

机构信息

Western Fisheries Research Center, Biological Resources Discipline, US Geological Survey, 6505 NE 65th St., Seattle, Washington 98115, USA.

出版信息

Rev Sci Tech. 2008 Apr;27(1):175-96.

Abstract

Biotechnology has been used extensively in the development of vaccines for aquaculture. Modern molecular methods such as polymerase chain reaction (PCR), cloning and microarray analysis have facilitated antigen discovery, construction of novel candidate vaccines, and assessments of vaccine efficacy, mode of action, and host response. This review focuses on DNA vaccines for finfish to illustrate biotechnology applications in this field. Although DNA vaccines for fish rhabdoviruses continue to show the highest efficacy, DNA vaccines for several other viral and bacterial fish pathogens have now been proven to provide significant protection against pathogen challenge. Studies of the fish rhabdovirus DNA vaccines have elucidated factors that affect DNA vaccine efficacy as well as the nature of the fish innate and adaptive immune responses to DNA vaccines. As tools for managing aquatic animal disease emergencies, DNA vaccines have advantages in speed, flexibility, and safety, and one fish DNA vaccine has been licensed.

摘要

生物技术已广泛应用于水产养殖疫苗的研发。现代分子方法,如聚合酶链反应(PCR)、克隆和微阵列分析,促进了抗原发现、新型候选疫苗的构建以及疫苗效力、作用方式和宿主反应的评估。本综述聚焦于鱼类DNA疫苗,以阐明生物技术在该领域的应用。尽管针对鱼类弹状病毒的DNA疫苗仍显示出最高的效力,但现已证明针对其他几种病毒性和细菌性鱼类病原体的DNA疫苗能提供显著的保护,抵御病原体攻击。对鱼类弹状病毒DNA疫苗的研究已阐明影响DNA疫苗效力的因素,以及鱼类对DNA疫苗的固有免疫和适应性免疫反应的性质。作为应对水生动物疾病突发事件的工具,DNA疫苗在速度、灵活性和安全性方面具有优势,并且一种鱼类DNA疫苗已获得许可。

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