首页> 美国卫生研究院文献>Infection and Immunity >Protection of mice against Vibrio vulnificus disease by vaccination with surface antigen preparations and anti-surface antigen antisera.
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Protection of mice against Vibrio vulnificus disease by vaccination with surface antigen preparations and anti-surface antigen antisera.

机译:通过用表面抗原制剂和抗表面抗原抗血清进行疫苗接种来保护小鼠免受弧菌弧菌病的侵害。

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摘要

Vaccination of mice with either Formalin-killed cells or cell extracts of a virulent strain and a weakly virulent strain of Vibrio vulnificus or with rabbit antisera (AS) against the Formalin-killed cells and cell extracts protected against the virulent strain of V. vulnificus. However, the virulent strain vaccines and AS elicited a significantly stronger immune response than the weakly virulent strain vaccines and AS. Adsorption of the AS with either the homologous or heterologous Formalin-killed cells significantly reduced the ability of the AS to protect mice. The major protective antigen(s) in the cell extracts migrated in the void volume of Sephacryl S-400 superfine, was not effectively sedimented by centrifugation at 100,000 X g for 2 h, had an isoelectric point of 3.8 to 4.2, and was sensitive to boiling or autoclaving for 15 min, periodate oxidation, and exposure to pH 12 but was resistant to 56 degrees C, trypsin, pronase, RNase, neuraminidase, and pH 4.5. Electron microscopy revealed that the virulent strain possessed a more dense ruthenium red-staining layer on its outer membrane and had a much smoother surface than the weakly virulent strain. Our results provide evidence that a major protective antigen and virulence factor of V. vulnificus is a heat-labile, acidic polysaccharide located on the bacterial surface.
机译:用福尔马林杀死的细胞或强毒弧菌和弱毒弧菌的细胞提取物对小鼠进行疫苗接种,或者用针对福尔马林杀死的福尔马林的细胞和细胞提取物的兔抗血清(AS)接种疫苗,以预防福尔马林的强毒株。但是,强毒株疫苗和AS引起的免疫应答比弱毒株疫苗和AS明显增强。用福尔马林杀死的同源或异源细胞对AS的吸附显着降低了AS保护小鼠的能力。在Sephacryl S-400超细粉的空隙体积中迁移的细胞提取物中的主要保护性抗原没有通过100,000 X g离心2 h进行有效沉淀,等电点为3.8至4.2,并且对煮沸或高压灭菌15分钟,高碘酸氧化,暴露于pH 12,但对56摄氏度,胰蛋白酶,链霉蛋白酶,RNase,神经氨酸酶和pH 4.5均具有抗性。电子显微镜显示,该毒力菌株在其外膜上具有更致密的钌红染色层,并且比弱毒力菌株具有更光滑的表面。我们的结果提供了证据,表明V. vulnificus的主要保护性抗原和致病因子是位于细菌表面的不耐热的酸性多糖。

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