Department of Environmental and Aquatic Animal Health, Virginia Institute of Marine Science, College of William and Mary, Gloucester Point, VA 23062-1346, USA.
Fish Shellfish Immunol. 2011 Jan;30(1):372-7. doi: 10.1016/j.fsi.2010.11.013. Epub 2010 Nov 18.
A compositional analysis of the antibody response in rainbow trout was conducted using an affinity-based immunopartitioning assay. Trout were immunized with TNP-keyhole limpet hemocyanin (TNP-KLH) and individual serum titers and their affinity distributions analyzed over a period of 27 weeks. The kinetics of antibody affinity subpopulation development revealed certain key features: 1) the lowest affinity subpopulation (log aK, 3.5-3.99) appears early, does not achieve high titer, and was more transient than the higher affinity subpopulations; 2) intermediate affinity subpopulations (log aK, 5.0-5.99) appear later (week 5), achieve relatively high titers and persist longer; and 3) the highest affinity subpopulations (log aK, 6.0-7.49) emerge much later (post week 15), and have comparable titers to the intermediate affinity group. We find that the affinity maturation of the serum antibody response can be resolved into each affinity subpopulation's contribution both in quantity and timing.
采用基于亲和力的免疫分配分析方法对虹鳟鱼的抗体反应进行了组成分析。虹鳟鱼用 TNP-血蓝蛋白(TNP-KLH)免疫,在 27 周的时间内分析了个体血清滴度及其亲和力分布。抗体亲和力亚群发展的动力学揭示了某些关键特征:1)最低亲和力亚群(log aK,3.5-3.99)出现较早,未达到高滴度,且比高亲和力亚群更短暂;2)中等亲和力亚群(log aK,5.0-5.99)出现较晚(第 5 周),达到相对高的滴度并持续更长时间;3)最高亲和力亚群(log aK,6.0-7.49)出现得更晚(第 15 周后),与中等亲和力亚群具有可比的滴度。我们发现,血清抗体反应的亲和力成熟可以通过每个亲和力亚群的数量和时间贡献来解决。