Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.
Fish Shellfish Immunol. 2013 May;34(5):1025-32. doi: 10.1016/j.fsi.2012.12.018. Epub 2013 Jan 18.
Natural infection of cyprinids, such as carp, with the extracellular protozoan parasite Trypanosoma carassii can attain up to 100% prevalence and cause significant host morbidity and mortality, particularly in aquaculture settings. Host recovery from T. carassii infection has been shown to be antibody (Immunoglobulin M; IgM)-mediated, conferring long-term immunity in recovered animals upon challenge. To assess the role of IgM in parasite clearance in the goldfish, IgM was purified by PEG-6000 precipitation from goldfish serum collected at 0 (naïve), 21 (peak parasitaemia) and 42 (recovery phase; immune) days post infection (dpi) and used for in vitro assays. Purified IgM from 0, 21, and 42 dpi serum showed dose- and time-dependent trypanocidal activity in vitro. Incubation of T. carassii with 0 dpi IgM showed the greatest reduction in trypanosome numbers after 24 h, followed by 42 dpi IgM, and finally by 21 dpi IgM. The trypanocidal activity of the PEG-purified IgM was abrogated by pre-absorption with parasites in vitro and was affected by temperature. Furthermore, studies using 0 dpi IgM purified using gel permeation chromatography showed increased trypanocidal activity, with complete elimination of parasites after 12 h when incubated with 200 μg of 0 dpi IgM, or by 24 h when incubated with 80 μg or 100 μg of 0 dpi IgM. Lastly, in vivo passive transfer experiments demonstrated that while immune serum or purified IgM from 42 dpi serum conferred protection against a challenge, neither 0 dpi serum or 0 dpi purified IgM conferred protection against challenge with T. carassii.
鱼类(如鲤鱼)的天然感染,如体外原生动物寄生虫旋毛虫感染,可达到 100%的流行率,并导致宿主发病率和死亡率显著增加,特别是在水产养殖环境中。已证明宿主从旋毛虫感染中恢复是抗体(免疫球蛋白 M;IgM)介导的,在受感染动物受到挑战时赋予长期免疫力。为了评估 IgM 在金鱼寄生虫清除中的作用,用 PEG-6000 沉淀从感染后 0(幼稚)、21(高峰期寄生虫血症)和 42(恢复期;免疫)天的金鱼血清中纯化 IgM,并用于体外检测。来自 0、21 和 42 dpi 血清的纯化 IgM 在体外显示出剂量和时间依赖性的杀原虫活性。与 0 dpi IgM 孵育的旋毛虫数量在 24 小时后显示出最大减少,其次是 42 dpi IgM,最后是 21 dpi IgM。PEG 纯化的 IgM 的杀原虫活性被体外预吸收寄生虫所阻断,并受温度影响。此外,使用凝胶渗透色谱法纯化的 0 dpi IgM 的研究表明,杀原虫活性增加,当用 200μg 的 0 dpi IgM 孵育 12 小时,或用 80μg 或 100μg 的 0 dpi IgM 孵育 24 小时时,寄生虫完全消除。最后,体内被动转移实验表明,42 dpi 血清的免疫血清或纯化 IgM 可提供针对挑战的保护,但 0 dpi 血清或 0 dpi 纯化 IgM 均不能提供针对旋毛虫挑战的保护。