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Human immune response to group A streptococcal carbohydrate (A-CHO). I. Quantitative and qualitative analysis of the A-CHO-specific B cell population responding in vitro to polyclonal and specific activation

机译:人类对A组链球菌碳水化合物(A-CHO)的免疫反应。 I.定量和定性分析A-CHO特异性B细胞群体在体外对多克隆和特异性激活的反应

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摘要

The immune response to the group-specific carbohydrate of group A streptococci (A-CHO) provides an informative in vitro model for the investigation of several aspects of human anticarbohydrate immune responses. A-CHO-specific B cells can be polyclonally activated by pokeweed mitogen (PWM), and, specifically, by in vitro immunization with streptococcal vaccine. High levels of A-CHO-specific antibodies, mainly directed to the immunodominant side chain N-acetyl-D-glucosamine (GlcNAc), occur in healthy adult individuals. Serum antibody levels are reflected in high frequencies of precursor B cells among peripheral blood lymphocytes. In one particular case, greater than 15% of all B cells activated by PWM for IgM production were found to produce IgM anti-A-CHO antibodies, as determined in limiting dilution experiments, as well as by analyzing Ig concentrations in bulk culture experiments. The case with the lowest proportion observed had 0.3% A-CHO-specific B cells among IgM-producing B cells. Preferential PWM activation of anti- A-CHO-producing B cells could be excluded. The comparison of the proportions of anti-A-CHO IgM produced in vivo, and of B cells producing antibodies of this specificity in peripheral blood, suggests a similar distribution of specific precursor B cells in the antibody- producing lymphoid tissue compartments and in peripheral blood. However, nearly all specific antibodies produced in vitro belong to the IgM isotype, whereas IgG anti-A-CHO in high amounts, mostly exceeding the specific IgM, was found only among anti-A-CHO antibodies produced in vivo. Low anti-A-CHO IgG production was seen in polyclonally activated as well as in antigen-activated cultures, whereas, in contrast, total IgG was produced in considerable amounts after polyclonal activation. This suggests a different distribution pattern, and/or diverse differentiation requirements for anti-A-CHO-producing B cells, compared with other B cell species.
机译:对A组链球菌(A-CHO)的组特异性碳水化合物的免疫应答为研究人类抗碳水化合物免疫应答的多个方面提供了有益的体外模型。商陆有丝分裂原(PWM)可以特异性克隆A-CHO特异的B细胞,特别是通过链球菌疫苗的体外免疫。高水平的A-CHO特异性抗体主要针对免疫优势侧链N-乙酰基-D-葡萄糖胺(GlcNAc),发生在健康的成年个体中。血清抗体水平反映在外周血淋巴细胞中前体B细胞的高频率中。在一种特定情况下,通过有限稀释实验以及通过在批量培养实验中分析Ig浓度确定,发现PWM激活的所有B细胞中有超过15%的B细胞会产生IgM抗A-CHO抗体。在产生IgM的B细胞中观察到最低比例的病例具有0.3%的A-CHO特异性B细胞。可以排除产生抗A-CHO的B细胞的优选PWM激活。体内产生的抗A-CHO IgM比例和产生这种特异性抗体的B细胞在外周血中的比例的比较表明,特异性前体B细胞在产生抗体的淋巴组织区室和外周血中的分布相似。但是,几乎所有体外产生的特异性抗体都属于IgM同种型,而仅在体内产生的抗A-CHO抗体中发现了大量的IgG抗A-CHO,大部分超过了特异性IgM。在多克隆激活以及抗原激活的培养物中观察到抗-A-CHO IgG的产量低,而相比之下,多克隆激活后产生的IgG总量却相当可观。与其他B细胞物种相比,这表明产生抗A-CHO的B细胞具有不同的分布模式和/或不同的分化要求。

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