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β-防御素在体内协同作用以抑制气管的细菌感染。

β-Defensins Coordinate In Vivo to Inhibit Bacterial Infections of the Trachea.

作者信息

Ryan Lisa Kathleen, Wu Jichuan, Schwartz Kyell, Yim Sunghan, Diamond Gill

机构信息

The Public Health Research Institute Center, Rutgers New Jersey Medical School, Newark, NJ 07103, USA.

Division of Pulmonary and Critical Care Medicine, Department of Medicine, Rutgers New Jersey Medical School, Newark, NJ 07103, USA.

出版信息

Vaccines (Basel). 2018 Aug 28;6(3):57. doi: 10.3390/vaccines6030057.

Abstract

β-defensins are predicted to play an important role in innate immunity against bacterial infections in the airway. We previously observed that a type III-secretion product of inhibits the NF-κB-mediated induction of a β-defensin in airway epithelial cells in vitro. To confirm this in vivo and to examine the relative roles of other β-defensins in the airway, we infected wild-type C57BL/6 mice and mice with a deletion of the mBD-1 gene with wild-type strain, RB50 and its mutant strain lacking the type III-secretion system, WD3. The bacteria were quantified in the trachea and the nasal tissue and mRNA levels of mouse β-defensin-3 (mBD-3) were assessed after 24 h. Infection with the wild-type bacterial strain resulted in lower mBD-3 mRNA levels in the trachea than in mice infected with the type III-deficient strain. Furthermore, we observed an increase in bacterial numbers of RB50 only in the tracheas of mBD-1-deficient mice. Neutrophils were also more abundant on the trachea in RB50 infected WT mice but not in the bronchiolar lavage fluid (BAL), compared with WD3 infected WT and mBD-1 mice, indicating that the coordination of β-defensin chemotactic effects may be confined to tracheal epithelial cells (TEC). RB50 decreased the ability of mice to mount an early specific antibody response, seven days after infection in both WT and mBD-1 mice but there were no differences in titers between RB50-infected WT and mBD-1 mice or between WD3-infected WT and mBD-1 mice, indicating mBD-1 was not involved in induction of the humoral immune response to the . Challenge of primary mouse TEC in vitro with RB50 and WD3, along with IL-1β, further corroborated the in vivo studies. The results demonstrate that at least two β-defensins can coordinate early in an infection to limit the growth of bacteria in the trachea.

摘要

β-防御素预计在气道抵抗细菌感染的固有免疫中发挥重要作用。我们之前观察到,一种III型分泌产物在体外可抑制气道上皮细胞中NF-κB介导的β-防御素诱导。为了在体内证实这一点,并研究其他β-防御素在气道中的相对作用,我们用野生型菌株RB50及其缺乏III型分泌系统的突变株WD3感染野生型C57BL/6小鼠和mBD-1基因缺失的小鼠。24小时后,对气管和鼻组织中的细菌进行定量,并评估小鼠β-防御素-3(mBD-3)的mRNA水平。与感染III型缺陷菌株的小鼠相比,感染野生型细菌菌株导致气管中mBD-3 mRNA水平更低。此外,我们仅在mBD-1缺陷小鼠的气管中观察到RB50细菌数量增加。与感染WD3的野生型和mBD-1小鼠相比,感染RB50的野生型小鼠气管中的中性粒细胞也更多,但在支气管肺泡灌洗液(BAL)中则不然,这表明β-防御素趋化作用的协同可能局限于气管上皮细胞(TEC)。感染七天后,RB50降低了小鼠产生早期特异性抗体反应的能力,在野生型和mBD-1小鼠中均如此,但RB50感染的野生型和mBD-1小鼠之间或WD3感染的野生型和mBD-1小鼠之间的滴度没有差异,这表明mBD-1不参与对该菌的体液免疫反应诱导。用RB50和WD3以及IL-1β在体外刺激原代小鼠TEC,进一步证实了体内研究结果。结果表明,至少两种β-防御素可在感染早期协同作用,以限制气管中细菌的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f6/6161282/4c130abd9a77/vaccines-06-00057-g001.jpg

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