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两种对B群脑膜炎奈瑟菌荚膜多糖具有不同精细特异性的IgG2a小鼠单克隆抗体的杀菌活性。

Bactericidal activity of two IgG2a murine monoclonal antibodies with distinct fine specificities for group B Neisseria meningitidis capsular polysaccharide.

作者信息

Hurpin C M, Carosella E D, Cazenave P A

机构信息

Immunology Research Department, Pasteur Mérieux Sérums et Vaccins, Marcy l'Etoile, France.

出版信息

Hybridoma. 1992 Dec;11(6):677-87. doi: 10.1089/hyb.1992.11.677.

Abstract

To analyze the fine specificity of the protective IgG response for the capsule of group B Neisseria meningitidis (Men B) induced after immunization with live bacteria, two specific IgG2a monoclonal antibodies (mAb) have been generated from hyperimmunized Balb/c and NZB mice (101C11 and 30H12). They specifically recognize in direct and competitive binding assays the capsular polysaccharides of Men B and Escherichia coli k1 on condition that the length of the polysaccharidic chain is sufficient to make a conformational structure (more than 15 monomers of alpha (2-->8) linked N-acetyl neuraminic acid). They do not interact with group A and group C Neisseria meningitidis polysaccharides in ELISA. A chemical derivative of the Men B polysaccharide, the N-propionylated Men B polysaccharide, considered as mimicking a unique bactericidal epitope on the surface of Men B is recognized by 101C11 but not by 30H12. The two mAb have, in vitro, a specific bactericidal activity against live Men B which do not seem serotype specific. Moreover, the killing of Men B mediated by 30H12 can be neutralized by an anti-idiotypic mAb (216F11) generated from A/J mice, immunized with polymerized 30H12. These data show that at least two distinct bactericidal epitopes exist on the surface of the Men B capsule.

摘要

为分析用活细菌免疫后诱导产生的针对B群脑膜炎奈瑟菌(Men B)荚膜的保护性IgG应答的精细特异性,从经超免疫的Balb/c和NZB小鼠(101C11和30H12)中产生了两种特异性IgG2a单克隆抗体(mAb)。在直接和竞争性结合试验中,它们能特异性识别Men B和大肠杆菌k1的荚膜多糖,条件是多糖链的长度足以形成构象结构(超过15个α(2→8)连接的N-乙酰神经氨酸单体)。在酶联免疫吸附测定(ELISA)中,它们不与A群和C群脑膜炎奈瑟菌多糖相互作用。Men B多糖的一种化学衍生物,即N-丙酰化Men B多糖,被认为模拟了Men B表面独特的杀菌表位,可被101C11识别,但不能被30H12识别。这两种mAb在体外对活的Men B具有特异性杀菌活性,似乎不具有血清型特异性。此外,由30H12介导的对Men B的杀伤作用可被用聚合的30H12免疫的A/J小鼠产生的抗独特型mAb(216F11)中和。这些数据表明,Men B荚膜表面至少存在两个不同的杀菌表位。

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