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首页> 外文期刊>BMC Immunology >Antibody-mediated immunity to the obligate intracellular bacterial pathogen Coxiella burnetii is Fc receptor- and complement-independent
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Antibody-mediated immunity to the obligate intracellular bacterial pathogen Coxiella burnetii is Fc receptor- and complement-independent

机译:对专性细胞内细菌病原体柯氏杆菌的抗体介导的免疫是非Fc受体和补体依赖性的

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Background The obligate intracellular bacterial pathogen Coxiella burnetii causes the zoonosis Q fever. The intracellular niche of C. burnetii has led to the assumption that cell-mediated immunity is the most important immune component for protection against this pathogen. However, passive immunization with immune serum can protect na?ve animals from challenge with virulent C. burnetii, indicating a role for antibody (Ab) in protection. The mechanism of this Ab-mediated protection is unknown. Therefore, we conducted a study to determine whether Fc receptors (FcR) or complement contribute to Ab-mediated immunity (AMI) to C. burnetii. Results Virulent C. burnetii infects and replicates within human dendritic cells (DC) without inducing their maturation or activation. We investigated the effects of Ab opsonized C. burnetii on human monocyte-derived and murine bone marrow-derived DC. Infection of DC with Ab-opsonized C. burnetii resulted in increased expression of maturation markers and inflammatory cytokine production. Bacteria that had been incubated with na?ve serum had minimal effect on DC, similar to virulent C. burnetii alone. The effect of Ab opsonized C. burnetii on DC was FcR dependent as evidenced by a reduced response of DC from FcR knockout (FcR k/o) compared to C57Bl/6 (B6) mice. To address the potential role of FcR in Ab-mediated protection in vivo, we compared the response of passively immunized FcR k/o mice to the B6 controls. Interestingly, we found that FcR are not essential for AMI to C. burnetii in vivo. We subsequently examined the role of complement in AMI by passively immunizing and challenging several different strains of complement-deficient mice and found that AMI to C. burnetii is also complement-independent. Conclusion Despite our data showing FcR-dependent stimulation of DC in vitro, Ab-mediated immunity to C. burnetii in vivo is FcR-independent. We also found that passive immunity to this pathogen is independent of complement.
机译:背景专心的细胞内细菌病原体伯氏柯氏杆菌会引起人畜共患病Q热。伯氏梭菌的细胞内生态位导致人们认为细胞介导的免疫是针对这种病原体的保护的最重要的免疫成分。但是,用免疫血清进行被动免疫可以保护幼稚动物免受强毒梭状芽孢杆菌的攻击,这表明抗体(Ab)在保护中发挥了作用。这种Ab介导的保护机制尚不清楚。因此,我们进行了一项研究,以确定Fc受体(FcR)或补体是否有助于针对Burnetii的Ab介导的免疫(AMI)。结果致命的伯氏梭状芽胞杆菌在人树突状细胞(DC)中感染并复制,而不诱导其成熟或激活。我们调查了Ab调理的伯氏梭菌对人单核细胞衍生和鼠类骨髓衍生DC的影响。用Ab调理的伯氏梭状芽胞杆菌感染DC导致成熟标志物表达增加和炎性细胞因子产生。与纯天然血清一起孵育的细菌对DC的影响最小,类似于单独的强毒梭状芽胞杆菌。与C57Bl / 6(B6)小鼠相比,Ab调理过的伯氏梭状芽胞杆菌对DC的作用是FcR依赖性的,这是由来自FcR敲除的DC响应降低(FcR k / o)所证明的。为了解决FcR在Ab介导的体内保护中的潜在作用,我们比较了被动免疫的FcR k / o小鼠对B6对照的反应。有趣的是,我们发现FcR对AMI体内的Burnetii梭菌不是必需的。随后,我们通过被动免疫和挑战几种不同的补体缺陷小鼠品系,检查了补体在AMI中的作用,并发现针对伯氏梭菌的AMI也与补体无关。结论尽管我们的数据显示了体外DC的FcR依赖性刺激,但Ab介导的体内对伯氏梭菌的免疫是非FcR依赖性的。我们还发现,对该病原体的被动免疫独立于补体。

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