首页> 外文期刊>Frontiers in Public Health >Indoor Particulate Matter From Smoker Homes Induces Bacterial Growth, Biofilm Formation, and Impairs Airway Antimicrobial Activity. A Pilot Study
【24h】

Indoor Particulate Matter From Smoker Homes Induces Bacterial Growth, Biofilm Formation, and Impairs Airway Antimicrobial Activity. A Pilot Study

机译:吸烟者室内的室内颗粒物质诱导细菌生长,生物膜形成,并损害气道抗菌活性。一项试点研究

获取原文
           

摘要

Background Particulate matter (PM) air pollution causes deleterious health effects; however, less is known about health effects of indoor air particulate matter (IAP). Objective To understand whether IAP influences distinct mechanisms in the development of respiratory tract infections, including bacterial growth, biofilm formation, and innate immunity. Additionally, we tested whether IAP from Iowa houses of subjects with and without recent respiratory exacerbations recapitulated the National Institute of Standards and Technology (NIST) IAP findings. Methods To test the effect of NIST and Iowa IAP on bacterial growth and biofilm formation, we assessed S. aureus growth and P. aeruginosa biofilm formation with and without the presence of IAP. To assess the effect of IAP on innate immunity, we exposed primary human airway surface liquid (ASL) to NIST, and Iowa IAP. Lastly, we tested whether specific metals may be responsible for effects on airway innate immunity. Results NIST and Iowa IAP significantly enhanced bacterial growth and biofilm formation. NIST IAP (whole particle and the soluble portion) impaired ASL antimicrobial activity. IAP from one Iowa home significantly impaired ASL antimicrobial activity (p0.05), and five other homes demonstrated a trend (p≤0.18) of impaired ASL antimicrobial activity. IAP from homes of subjects with a recent history of respiratory exacerbation tended (p=0.09) to impair ASL antimicrobial activity more than IAP from homes of those without a history respiratory exacerbation. Aluminum and Magnesium impaired ASL antimicrobial activity, while copper was bactericidal. Combining metals varied their effect on ASL antimicrobial activity. Conclusions NIST IAP and Iowa IAP enhanced bacterial growth and biofilm formation. ASL antimicrobial activity was impaired by NIST IAP, and Iowa house IAP from subjects with recent respiratory exacerbation tended to ASL antimicrobial activity. Individual metals may explain impaired ASL antimicrobial activity; however, their combined effect remains elusive.
机译:背景颗粒物质(PM)空气污染导致有害的健康效果;然而,关于室内空气颗粒物质(IAP)的健康影响,较少。目的了解IAP是否会影响呼吸道感染的发展中的不同机制,包括细菌生长,生物膜形成和先天免疫。此外,我们测试了IAP是否来自IOWA的受试者的房屋,而没有最近的呼吸恶化的呼吸系统,请概括了国家标准和技术研究所(NIST)IAP调查结果。方法测试NIST和IOWA IAP对细菌生长和生物膜形成的影响,我们评估了AUREUS生长和P. Aeruginosa生物膜形成,无和在没有IAP的情况下。为了评估IAP对先天免疫力的影响,我们将主要人体气道表面液体(ASL)暴露给NIST,以及Iowa IAP。最后,我们测试了特定金属是否可能对呼吸道天生的影响负责。结果NIST和IOWA IAP显着增强了细菌生长和生物膜形成。 NIST IAP(全颗粒和可溶部分)受损ASL抗菌活性。来自一个iowa家的IAP显着受损的ASL抗菌活性(P <0.05),另外五个家庭展示了ASL抗菌活性受损的趋势(P≤0.18)。来自近期呼吸急性历史的受试者的家庭,倾向于(p = 0.09),损害ASL抗菌活性超过IAP,而没有历史呼吸加剧的家庭。铝和镁镁抗菌活性,而铜被杀菌。组合金属对ASL抗菌活性的影响变化。结论NIST IAP和IOWA IAP增强的细菌生长和生物膜形成。 ASL抗菌活性受到NIST IAP的损害,而iOWA House IAP来自近期呼吸道加剧的受试者倾向于ASL抗菌活性。单个金属可以解释ASL抗菌活性受损;然而,它们的综合效果仍然难以捉摸。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号