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针对脑膜炎奈瑟菌表位的免疫反应:对参与抑制针对磷酸胆碱二次反应的免疫活性细胞的体内分析。

Immunoresponses to Neisseria meningitidis epitopes: in vivo analysis of immunocompetent cells involved in suppression of secondary response to phosphorylcholine.

作者信息

Faro J, Seoane R, Lareo I, Eiras A, Schiller M, Regueiro B J

机构信息

Departamento de Microbiología y Parasitología, Facultad de Medicina, Santiago de Compostela, Spain.

出版信息

Med Microbiol Immunol. 1987;176(6):289-303. doi: 10.1007/BF00194889.

Abstract

The immune response to phosphorylcholine (PC) antigens has been extensively studied in recent years. Neisseria meningitidis serogroup B M986 (NMB) was recently reported to induce a PC-specific plaque-forming cell (PFC) immuno-response in mice, a characteristic useful for the study of immunomodulating properties of N. meningitidis. With this technique, priming mice with low doses of NMB has been shown greatly to impair their ability, one month after priming, to mount an anti-PC response induced by NMB; this suppression is permanent, does not involve switching from IgM to another immunoglobulin class, transiently affects the T15 idiotype expression and is carrier specific. We report, based on an analysis of spleen cells from NMB-primed mice in an adoptive transfer model, that this suppression does not appear to be mediated by B lymphocytes nor does it seem to be under the direct control of T lymphocytes; rather, it involves radio-resistant cells. Additionally, our results show that NMB modulates the idiotype composition of the anti-phosphorylcholine response, probably by enhancing the expression of so called hapten-augmentable PFC. These results demonstrate that NMB can interfere effectively with the immune response in a variety of ways.

摘要

近年来,针对磷酸胆碱(PC)抗原的免疫反应得到了广泛研究。最近有报道称,B群脑膜炎奈瑟菌M986株(NMB)可在小鼠体内诱导产生PC特异性空斑形成细胞(PFC)免疫反应,这一特性有助于研究脑膜炎奈瑟菌的免疫调节特性。利用该技术,已证实用低剂量NMB对小鼠进行初次免疫后,在初次免疫后一个月,小鼠产生由NMB诱导的抗PC反应的能力会受到极大损害;这种抑制作用是永久性的,不涉及从IgM转换为其他免疫球蛋白类别,会短暂影响T15独特型表达,且具有载体特异性。基于对过继转移模型中经NMB初次免疫的小鼠脾细胞的分析,我们报告称,这种抑制作用似乎不是由B淋巴细胞介导的,也似乎不受T淋巴细胞的直接控制;相反,它涉及放射抗性细胞。此外,我们的结果表明,NMB可能通过增强所谓的半抗原增强型PFC的表达来调节抗磷酸胆碱反应的独特型组成。这些结果表明,NMB可以通过多种方式有效干扰免疫反应。

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