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首页> 外文期刊>Cell Host & Microbe >Dual-Track Clearance of Circulating Bacteria Balances Rapid Restoration of Blood Sterility with Induction of Adaptive Immunity
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Dual-Track Clearance of Circulating Bacteria Balances Rapid Restoration of Blood Sterility with Induction of Adaptive Immunity

机译:循环细菌的双轨清除平衡了血液不育的快速恢复,并引入了自适应免疫

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摘要

Efficient clearance of bacteremia prevents life-threatening disease. Platelet binding to intravascular bacteria, a process involving platelet glycoprotein GPIb and bacterial opsonization with activated complement C3, influences blood clearance and anti-infective immunity. Using intravital microscopy of the bloodstream of mice infected with Listeriamonocytogenes, we show that bacterial clearance is not a uniform process but a "dual-track" mechanism consisting of parallel "fast" and "slow" pathways. "Slow clearance" is regulated by time-dependent bacterial opsonization, stochastic platelet binding, and capture of bacteria-platelet-complexes via the complement receptor of the immunoglobulin superfamily, CRIg. The mechanism spares some bacteria from "fast clearance" and rapid destruction in the liver via Kupffer cell scavenger receptors, keeping them available for adaptive immunity induction by splenic CD8 alpha(+) dendritic cells. We consistently find "fast" and "slow" clearance patterns for a broad panel of other Gram+ and Gram- bacteria. Thus, dual-track clearance balances rapid restoration of blood sterility with induction of specific antibacterial immunity.
机译:有效清除菌血症可预防威胁生命的疾病。血小板与血管内细菌的结合(包括血小板糖蛋白GPIb和活化补体C3的细菌调理作用)会影响血液清除和抗感染免疫力。使用活体显微镜检查感染单核细胞增生性李斯特菌的小鼠的血流,我们显示细菌清除不是一个统一的过程,而是由平行的“快速”和“缓慢”途径组成的“双轨”机制。 “缓慢清除”受时间依赖性细菌调理作用,随机血小板结合以及通过免疫球蛋白超家族CRIg的补体受体捕获细菌-血小板复合物的调控。该机制使一些细菌免于通过Kupffer细胞清除剂受体在肝脏中“快速清除”和快速破坏,从而使它们可用于脾脏CD8 alpha(+)树突状细胞的适应性免疫诱导。对于其他种类繁多的革兰氏阳性和革兰氏细菌,我们始终发现“快速”和“缓慢”清除模式。因此,双通道清除平衡了血液无菌性的快速恢复与特定抗菌免疫的诱导。

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