Rajan Binoy, Løkka Guro, Koppang Erling Olaf, Austbø Lars
Institute of Basic Science and Aquatic Medicine, Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Oslo 0454, Norway.
Institute of Basic Science and Aquatic Medicine, Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Oslo 0454, Norway
J Immunol. 2017 Jun 1;198(11):4195-4202. doi: 10.4049/jimmunol.1700154.
The fast growth and potential of global aquaculture has necessitated the adoption of sustainable and welfare-oriented therapeutics and prophylactic strategies. Knowledge gathered from studies about maternal passive immunity in fish and fish-to-fish passive immunization experiments supports the concept of using therapeutic Abs (of piscine and other vertebrate origin) in aquaculture. Traditional Ab formats (IgG, IgM) are expensive and laborious to produce; however, the introduction of new rAb fragments and single-domain Abs have reinvigorated the concept of passive immunization. This review will focus primarily on farmed salmonids (salmon and trout) within a comparative context and will give an overview of the basic principles and scientific premises for the passive immunization strategy, including existing and emerging Ab therapeutics.
全球水产养殖的快速增长及其潜力,使得采用可持续且注重福利的治疗和预防策略成为必要。从关于鱼类母体被动免疫的研究以及鱼与鱼之间的被动免疫实验中收集到的知识,支持了在水产养殖中使用(源自鱼类和其他脊椎动物的)治疗性抗体的概念。传统的抗体形式(IgG、IgM)生产成本高昂且费力;然而,新型重组抗体片段和单域抗体的引入,为被动免疫概念注入了新活力。本综述将主要聚焦于养殖鲑科鱼类(鲑鱼和鳟鱼),并在比较的背景下,概述被动免疫策略的基本原理和科学依据,包括现有的和新兴的抗体治疗方法。