[Immunochemical characteristics of the population structure of antibody-producing cells in experimental influenza].

A I Dukhin, I I Agafonova, B L Voĭtsekhovskiĭ
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引用次数: 0

Abstract

The authors presented the results of population study of specific IgG-antibody-forming cells (AFC) in the pool of mice splenocytes performed in the time-course of simulated influenza with the help of experimental mathematical approach which permitted making a detailed observation of the functional structure of the population and analysing the changes in the spectrum of the AFC subpopulations in the time-course of viral disease. Mathematical simulation of the main stage of immunopointed identification of AFC on +nitrocellulose filters (NCF) permitted the verification of the ratio between the characteristic features of the spots on the NCF and the number and affinity of cell-secreting IgG antibodies. New data are obtained on the formation of the population of +virus-specific IgG-AFC which are featured by discreteness of the AFC +affinity ++ spectrum, cyclic changes in their activity and shifts in the stages of the AFC subpopulation activity. The authors substantiated the necessity to revise the existing theoretical models of the formation of humoral immune response to viral infections.

[实验性流感中产生抗体细胞群体结构的免疫化学特征]。
作者介绍了在模拟流感的时间过程中,利用实验数学方法对小鼠脾细胞池中的特异性igg抗体形成细胞(AFC)进行群体研究的结果,该方法允许对群体的功能结构进行详细观察,并分析AFC亚群在病毒疾病的时间过程中的频谱变化。对+硝化纤维素过滤器(NCF)上AFC免疫点鉴定的主要阶段进行数学模拟,验证了NCF上斑点的特征特征与细胞分泌IgG抗体的数量和亲和力之间的比例。获得了+病毒特异性IgG-AFC群体形成的新数据,该群体具有AFC +亲和力++谱的离散性、活性的周期性变化和AFC亚群活动的阶段性变化。作者证实了对病毒感染体液免疫反应形成的现有理论模型进行修正的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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