鸡脾脏对同源抗原和交叉反应抗原继发性免疫反应的细胞学变化和抗原捕获。

Z A Nagy, E Horváth, Z Urbán
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引用次数: 0

摘要

使用125i标记抗原的放射自显影证实,在对牛血清白蛋白(BSA)的二次反应中,在抗体产生之前,相当数量的抗原定位于鸡脾脏的生发中心(GC)。同样的早期抗原捕获,虽然程度较轻,也被注意到,当最初用BSA免疫的鸟类第二次注射人血清白蛋白(HSA)时。在原发性反应中,早期抗原定位在GCs中几乎不明显。由于抗原捕获需要特异性抗体,因此得出结论,抗原结合细胞与在初次免疫反应中形成的GCs的B淋巴细胞或其后代相对应。在抗原刺激下,这些细胞在一次或多次有丝分裂后转化为产生抗体的细胞。因此,GCs可以被看作是由致力于同一抗原的细胞组成的记忆单元。胸腺系统的细胞可能在抗原诱导的GCs形成中起协同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cytological changes and antigen capture in chicken spleen during the secondary immune response to homologous and cross-reacting antigens.

It was demonstrated by autoradiography using 125I-labeled antigens that in the secondary response to bovine serum albumin (BSA), a considerable amount of antigen is localizing in the germinal centers (GC) of chicken spleen prior to the onset of antibody production. A similar early antigen capture, although of a lesser degree, was also noted when birds originally immunized with BSA were injected with human serum albumin (HSA) on a second occasion. Early antigen localization in GCs was scarcely demonstrable in the primary response. Since antigen capture requires specific antibodies, it was concluded that the antigen binding cells correspond with B lymphocytes of GCs formed during the primary immune response or with their descendants. On antigenic stimulus, these cells transform to antibody producing cells after one or more mitoses. GCs can therefore be regarded as memory units composed of cells committed to one and the same antigen. Cells of the thymus-system probably play a cooperative role in the antigen-induced formation of GCs.

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