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A Murine Model in Which Protection Correlates with Pertussis Vaccine Efficacy in Children Reveals Complementary Roles for Humoral and Cell-Mediated Immunity in Protection against Bordetella pertussis

机译:保护与儿童百日咳疫苗功效相关的小鼠模型揭示了在预防百日咳博德特氏菌中的体液和细胞介导的免疫的补充作用

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摘要

The results of phase 3 efficacy trials have shown that acellular and whole-cell pertussis vaccines can confer protection against whooping cough. However, despite the advances in vaccine development, clinical trials have not provided significant new information on the mechanism of protective immunity against Bordetella pertussis. Classical approaches based on measurement of antibody responses to individual antigens failed to define an immunological correlate of protection. A reliable animal model, predictive of acellular and whole-cell pertussis vaccine potency in children, would facilitate an elucidation of the mechanism of immune protection against B. pertussis and would assist in the regulatory control and future development of pertussis vaccines. In this study, we have shown that the rate of B. pertussis clearance following respiratory challenge of immunized mice correlated with vaccine efficacy in children. Using this model together with mice with targeted disruptions of the gamma interferon (IFN-γ) receptor, interleukin-4 or immunoglobulin heavy-chain genes, we have demonstrated an absolute requirement for B cells or their products in bacterial clearance and a role for IFN-γ in immunity generated by previous infection or immunization with the whole-cell pertussis vaccine. The results of passive immunization experiments suggested that protection early after immunization with acellular pertussis vaccines is mediated by antibody against multiple protective antigens. In contrast, more complete protection conferred by previous infection or immunization with whole-cell pertussis vaccines reflected the induction of Th1 cells. Our findings suggest that the mechanism of immunity against B. pertussis involves humoral and cellular immune responses which are not directed against a single protective antigen and thus provide an explanation for previous failures to define an immunological correlate of protection.
机译:3期功效试验的结果表明,脱细胞百日咳疫苗和全细胞百日咳疫苗可以预防百日咳。然而,尽管疫苗开发取得了进步,但临床试验并未提供有关针对百日咳博德特氏菌的保护性免疫机制的重要新信息。基于对单个抗原的抗体反应的测量的经典方法未能确定保护的免疫学关联。可靠的动物模型可预测儿童脱细胞和全细胞百日咳疫苗的效力,将有助于阐明针对百日咳博德特氏菌的免疫保护机制,并将有助于百日咳疫苗的监管和未来开发。在这项研究中,我们表明免疫小鼠呼吸激发后百日咳博德特氏菌的清除率与儿童疫苗效力相关。将此模型与靶向干扰γ-干扰素(IFN-γ)受体,白介素4或免疫球蛋白重链基因的小鼠一起使用,我们已经证明了B细胞或其产物对细菌清除具有绝对的要求,并且对IFN具有作用先前感染或全细胞百日咳疫苗免疫产生的免疫力为-γ。被动免疫实验的结果表明,用无细胞百日咳疫苗免疫后早期的保护作用是由针对多种保护性抗原的抗体介导的。相反,以前用全细胞百日咳疫苗进行感染或免疫所赋予的更全面的保护作用反映了Th1细胞的诱导。我们的发现表明,针对百日咳博德特氏菌的免疫机制涉及体液和细胞免疫反应,这些反应并不针对单个保护性抗原,因此可以为先前未能定义保护性免疫相关性提供解释。

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