Impact of variations in airborne microbiota on pneumonia infection: An exploratory study

IF 6.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Ecotoxicology and Environmental Safety Pub Date : 2025-02-01 Epub Date: 2025-01-28 DOI:10.1016/j.ecoenv.2025.117795
Li Zhou , Chenchen Song , Lianlian Zhao , Zhi Guo , Yuhan Lei , Yunlin Han , Kai Gao , Yanfeng Xu , Zhiguang Xiang , Baicun Li , Jianguo Guo
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Abstract

Background

Previous studies showed airborne bacteria affect pneumonia incidence, but specific impacts of bacterial communities on Klebsiella pneumoniae infection were unknown.

Methods

Five different ratios of bacterial community structures were randomly generated. Mice were divided into control, artificial bacterial community exposure, and corresponding Klebsiella pneumoniae challenge groups. Changes in body weight, blood parameters, pulmonary pathology, inflammatory factors, metabolomics, and fecal microbiota were analyzed.

Results

Different bacterial community exposures had varying degrees of influence on body weight, complete blood count, inflammatory factors, alveolar lavage fluid and plasma metabolome, as well as intestinal microbiota at baseline and after infection. Metabolomic analysis showed that microbial exposure affected both bronchoalveolar lavage fluid and plasma metabolomes, suggesting systemic effects of microbial exposure on the organism. Differences in the structure of artificial microbiota had inconsistent effects on both the baseline state and the post-infection state, hinting at crosstalk between microbial exposure and Klebsiella pneumoniae infection. KEGG pathway analysis unveiled possible molecular mechanisms underlying the overall impact of microbial exposure on the lungs and the body as a whole. In the intestinal microbiota, differences were found in composition at the phylum and genus levels. Spearman correlation analysis established potential correlations between intestinal microbiota and differential metabolites, suggesting a potential link within the lung-gut axis.

Conclusion

This study demonstrated the significant and systemic impact of air microbiota structure differences on health. Future research should explore the underlying mechanisms to enhance our understanding of the air-environment-health relationship and identify interventions for improving public health strategies.
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空气微生物群变化对肺炎感染的影响:一项探索性研究。
背景:以往研究表明空气中细菌影响肺炎发病率,但细菌群落对肺炎克雷伯菌感染的具体影响尚不清楚。方法:随机生成5种不同比例的细菌群落结构。小鼠分为对照组、人工菌群暴露组和相应的肺炎克雷伯菌攻毒组。分析了体重、血液参数、肺部病理、炎症因子、代谢组学和粪便微生物群的变化。结果:不同菌群暴露对感染前后患者的体重、全血细胞计数、炎症因子、肺泡灌洗液和血浆代谢组以及肠道菌群均有不同程度的影响。代谢组学分析显示,微生物暴露影响支气管肺泡灌洗液和血浆代谢组,表明微生物暴露对机体有全身性影响。人工菌群结构的差异对基线状态和感染后状态的影响不一致,暗示微生物暴露与肺炎克雷伯菌感染之间存在串扰。KEGG通路分析揭示了微生物暴露对肺部和整个身体整体影响的可能分子机制。在肠道微生物群中,在门和属水平上的组成存在差异。Spearman相关分析建立了肠道微生物群与差异代谢物之间的潜在相关性,表明肺-肠轴内存在潜在联系。结论:本研究证明了空气微生物群结构差异对健康的显著和系统性影响。未来的研究应探索潜在的机制,以加强我们对空气-环境-健康关系的理解,并确定改善公共卫生战略的干预措施。
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来源期刊
CiteScore
12.10
自引率
5.90%
发文量
1234
审稿时长
88 days
期刊介绍: Ecotoxicology and Environmental Safety is a multi-disciplinary journal that focuses on understanding the exposure and effects of environmental contamination on organisms including human health. The scope of the journal covers three main themes. The topics within these themes, indicated below, include (but are not limited to) the following: Ecotoxicology、Environmental Chemistry、Environmental Safety etc.
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