首页> 美国卫生研究院文献>Infection and Immunity >Interleukin-12 is produced by macrophages in response to live or killed Bordetella pertussis and enhances the efficacy of an acellular pertussis vaccine by promoting induction of Th1 cells.
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Interleukin-12 is produced by macrophages in response to live or killed Bordetella pertussis and enhances the efficacy of an acellular pertussis vaccine by promoting induction of Th1 cells.

机译:巨噬细胞响应于活的或杀死的百日咳博德特氏菌产生白细胞介素12并通过促进Th1细胞诱导而增强无细胞百日咳疫苗的功效。

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摘要

Using a murine respiratory infection model, we have demonstrated previously that infection with Bordetella pertussis or immunization with a whole-cell pertussis vaccine induced antigen-specific Th1 cells, which conferred a high level of protection against aerosol challenge. In contrast, immunization with an acellular vaccine, consisting of the B. pertussis components detoxified pertussis toxin, filamentous hemagglutinin, and pertactin adsorbed to alum, generated Th2 cells and was associated with delayed bacterial clearance following challenge. In this study, we demonstrated that addition of interleukin-12 (IL-12) either in vitro or in vivo enhanced type 1 T-cell cytokine responses induced with an acellular vaccine. Furthermore, the rate of bacterial clearance in mice coinjected with IL-12 and the acellular vaccine was similar to that observed following immunization with a potent whole-cell vaccine. Analysis of IL-12 secretion by murine macrophages suggested that this cytokine is produced in vivo following B. pertussis infection or immunization with the whole-cell vaccine. IL-12 was detected in the supernatants of lung, splenic, and peritoneal macrophages infected with live B. pertussis or stimulated with heat-killed whole B. pertussis or B. pertussis lipopolysaccharide. In contrast, IL-12 could not be detected following stimulation of macrophages with the bacterial antigens filamentous hemagglutinin, detoxified pertussis toxin, and pertactin, the components of acellular vaccines. Our findings suggest that induction of endogenous IL-12 may contribute to the high efficacy of pertussis whole-cell vaccines and also demonstrate that it is possible to attain these high levels of protection with a less reactogenic acellular vaccine incorporating IL-12 as an adjuvant.
机译:使用鼠类呼吸道感染模型,我们先前已证明百日咳博德特氏菌感染或全细胞百日咳百日咳疫苗免疫可诱导抗原特异性Th1细胞,从而赋予了针对气溶胶攻击的高度保护。相反,用由百日咳博德特氏菌成分解毒的百日咳博德特氏菌毒素,丝状血凝素和吸附到明矾的百日咳杆菌素组成的脱细胞疫苗进行免疫,产生Th2细胞,并且与挑战后细菌清除延迟有关。在这项研究中,我们证明了添加白细胞介素12(IL-12)可以在体外或体内增强无细胞疫苗诱导的1型T细胞细胞因子的应答。此外,在用IL-12和无细胞疫苗共同注射的小鼠中细菌清除率与用强力全细胞疫苗免疫后观察到的相似。鼠巨噬细胞对IL-12分泌的分析表明,这种细胞因子是在百日咳博德特氏菌感染或用全细胞疫苗免疫后在体内产生的。在感染了活百日咳博德特氏菌或用热灭活的完整百日咳博德特氏菌或百日咳博德特氏菌脂多糖刺激的肺,脾和腹膜巨噬细胞的上清液中检测到IL-12。相反,用细菌抗原丝状血凝素,解毒的百日咳毒素和百日咳杆菌肽(无细胞疫苗的成分)刺激巨噬细胞后,无法检测到IL-12。我们的发现表明,内源性IL-12的诱导可能有助于百日咳全细胞疫苗的高功效,并且还表明,使用结合IL-12作为佐剂的反应性较小的脱细胞疫苗可以实现这些高水平的保护。

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