Serotype determinant protein of Neisseria Meningitidis. Large scale preparation by direct detergent treatment of the bacterial cells.

T. Helting, G. Guthöhrlein, F. Blackkolb, H. Ronneberger
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引用次数: 16

Abstract

Neisseria meningitidis Group B microorganisms, inactivated with phenol and harvested by centrifugation, were subjected to direct treatment with various detergents to solubilize the serotype determinant proteins localized in the outer membrane. Analysis of the data showed that extraction of the cells with detergents provided yields of the serotype protein substantially exceeding those obtained by simple salt extraction of the bacteria. Routinely, more than 2 mg of end product per g of cell mass (wet weight) may be recovered by the present method. By gel chromatographic analysis, the serotype determinant protein was shown to interact with the capsular polysaccharides derived from Group A or C Neisseria meningitidis microorganisms, forming high molecular weight complexes. This interaction markedly enhanced the solubility of the serotype determinant protein. Combined vaccines of the type-specific protein with the group- specific polysaccharides were evaluated for their immunogenic potential in the subcutaneous steel spring implant model. In guinea pigs, amounts corresponding to 10 micrograms completely prevented infection upon challenge with homologous organisms four weeks after immunization. Partial protection was observed with immunizing doses corresponding to 2 micrograms or 0.4 micrograms/animal, respectively. Compared to lyophilized preparations, vaccines adsorbed to a mineral carrier were slightly less effective in inducing protection, whereas inclusion of Bordetella pertussis as a component of the vaccine stimulated the immune response.
脑膜炎奈瑟菌血清型决定蛋白。用直接去污剂处理细菌细胞的大规模制备。
用苯酚灭活和离心收集的脑膜炎奈瑟菌B组微生物,用各种洗涤剂直接处理,以溶解定位在外膜的血清型决定蛋白。对数据的分析表明,用洗涤剂提取的细胞提供的血清型蛋白的产量大大超过简单的盐提取的细菌。通常,每克细胞质量(湿重)可回收2毫克以上的终产物。凝胶层析分析表明,血清型决定蛋白与来自A或C群脑膜炎奈瑟菌微生物的荚膜多糖相互作用,形成高分子量复合物。这种相互作用显著提高了血清型决定蛋白的溶解度。在皮下钢弹簧植入模型中,评估了类型特异性蛋白与组特异性多糖的联合疫苗的免疫原性。在豚鼠中,相当于10微克的剂量在免疫后四周完全防止同源生物的攻击感染。免疫剂量分别为2微克和0.4微克/只时,可观察到部分保护作用。与冻干制剂相比,吸附在矿物载体上的疫苗在诱导保护方面的效果略差,而将百日咳博德泰拉作为疫苗的一个组成部分刺激了免疫反应。
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