首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Vaccination with Legionella pneumophila membranes induces cell-mediated and protective immunity in a guinea pig model of Legionnaires disease. Protective immunity independent of the major secretory protein of Legionella pneumophila.
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Vaccination with Legionella pneumophila membranes induces cell-mediated and protective immunity in a guinea pig model of Legionnaires disease. Protective immunity independent of the major secretory protein of Legionella pneumophila.

机译:在肺炎军团病的豚鼠模型中肺炎军团菌膜接种疫苗可诱导细胞介导的保护性免疫。保护性免疫独立于嗜肺军团菌的主要分泌蛋白。

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摘要

We have examined the capacity of Legionella pneumophila membranes to induce cell-mediated immune responses and protective immunity in a guinea pig model of Legionnaires' disease. Guinea pigs immunized by aerosol with L. pneumophila membranes developed strong cell-mediated immune responses to L. pneumophila membranes as demonstrated by cutaneous delayed-type hypersensitivity and in vitro splenic lymphocyte proliferation. Guinea pigs immunized by aerosol or by subcutaneous inoculation with L. pneumophila membranes developed strong protective immunity against lethal aerosol challenge with L. pneumophila. Overall, in six independent experiments, 39 of 49 (80%) guinea pigs immunized with L. pneumophila membranes survived challenge compared with 2 of 40 (5%) sham-immunized controls (P = 2 x 10(-13). In contrast, guinea pigs immunized by aerosol with formalin-killed L. pneumophila did not develop either a strong cell-mediated immune response to L. pneumophila antigens or protective immunity to lethal aerosol challenge. The capacity of L. pneumophila membranes to induce protective immunity was independent of the major secretory protein of L. pneumophila, which we previously demonstrated is an immunoprotective molecule. Purified L. pneumophila membranes did not contain detectable major secretory protein (MSP) on immunoblots; immunization of guinea pigs with L. pneumophila membranes did not induce anti-MSP antibody; and guinea pigs developed comparable protective immunity after immunization with membranes from either an L. pneumophila strain that secretes the major secretory protein or an isogenic mutant that does not. This study demonstrates that (a) immunization with L. pneumophila membranes but not formalin-killed L. pneumophila induces strong cell-mediated immune responses and protective immunity, (b) L. pneumophila membranes contain immunoprotective molecules distinct from the major secretory protein of L. pneumophila, and (c) L. pneumophila membranes have potential as a vaccine against Legionnaires' disease.
机译:我们已经检查了嗜肺军团菌膜在军团病的豚鼠模型中诱导细胞介导的免疫反应和保护性免疫的能力。气溶胶对肺炎链球菌膜进行免疫接种的豚鼠对肺炎链球菌膜有很强的细胞介导的免疫反应,如皮肤迟发型超敏反应和体外脾淋巴细胞增殖所证明。通过气雾剂或通过肺炎衣原体膜的皮下接种免疫的豚鼠对抵抗肺炎衣原体的致死性气溶胶攻击具有很强的保护性免疫力。总体而言,在六个独立的实验中,49例(80%)肺炎链球菌膜免疫的豚鼠中有39例存活攻击,而40例(5%)的假免疫对照组中有2例存活(P = 2 x 10(-13)。 ,用福尔马林杀死的肺炎支原体气雾剂免疫的豚鼠,无论是针对肺炎支原体抗原的细胞介导的免疫反应,还是对致命气溶胶攻击的保护性免疫,均不具有独立的能力。纯化的肺炎链球菌膜在免疫印迹上不含可检测的主要分泌蛋白(MSP);用肺炎球菌膜对豚鼠进行免疫接种不会诱导抗-MSP抗体;豚鼠用分泌主要分泌蛋白或同工酶的嗜肺乳杆菌菌株的膜免疫后,可产生相当的保护性免疫基因突变体没有。这项研究表明(a)用肺炎链球菌膜免疫但未用福尔马林杀死的肺炎链球菌诱导强烈的细胞介导的免疫反应和保护性免疫,(b)肺炎链球菌膜含有不同于L的主要分泌蛋白的免疫保护分子。肺炎衣原体和(c)肺炎衣原体膜有潜力作为抗退伍军人症的疫苗。

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