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首页> 外文期刊>Applied Microbiology >Electronic Cigarette (E-Cigarette) Vapor Exposure Alters the Streptococcus pneumoniae Transcriptome in a Nicotine-Dependent Manner without Affecting Pneumococcal Virulence
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Electronic Cigarette (E-Cigarette) Vapor Exposure Alters the Streptococcus pneumoniae Transcriptome in a Nicotine-Dependent Manner without Affecting Pneumococcal Virulence

机译:电子香烟(电子香烟)蒸气暴露在尼古丁依赖性的方式改变了肺炎链球菌转录组,而不会影响肺炎球菌毒力

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摘要

The effects of electronic cigarette (e-cigarette) vapor (EV) exposure on the physiology of respiratory microflora are not fully defined. We analyzed the effects of exposure to vapor from nicotine-containing and nicotine-free e-liquid formulations on the virulence and transcriptome of Streptococcus pneumoniae strain TIGR4, a pathogen that asymptomatically colonizes the human nasopharyngeal mucosa. TIGR4 was preexposed for 2?h to nicotine-containing EV extract (EVE~(+NIC)), nicotine-free EV extract (EVE~(?NIC)), cigarette smoke extract (CSE), or nutrient-rich tryptic soy (TS) broth (control). The differences between the treatment and control strains were explored using transcriptome sequencing (RNA sequencing [RNA-Seq]), in vitro virulence assays, and an in vivo mouse model of acute pneumonia. The analysis of RNA-Seq profiles revealed modest changes in the expression of 14 genes involved in sugar transport and metabolism in EVE~(?NIC)-preexposed TIGR4 compared to the control, while EVE~(+NIC) or CSE exposure altered expression of 264 and 982 genes, respectively, most of which were involved in metabolism and stress response. Infection in a mouse model of acute pneumonia with control TIGR4 or with TIGR4 preexposed to EVE~(+NIC), EVE~(?NIC), or CSE did not show significant differences in disease parameters, such as bacterial organ burden and respiratory cytokine response. Interestingly, TIGR4 exposed to CSE or EVE~(+NIC) (but not EVE~(?NIC)) exhibited moderate induction of biofilm formation. However, none of the treatment groups showed significant alterations in pneumococcal hydrophobicity or epithelial cell adherence. In summary, our study reports that exposure to EV significantly alters the S. pneumoniae transcriptome in a nicotine-dependent manner without affecting pneumococcal virulence.IMPORTANCE With the increasing popularity of e-cigarettes among cigarette smoking and nonsmoking adults and children and the recent reports of vaping-related lung illness and deaths, further analysis of the adverse health effects of e-cigarette vapor (EV) exposure is warranted. Since pathogenic bacteria such as Streptococcus pneumoniae can colonize the human nasopharynx as commensals, they may be affected by exposure to bioactive chemicals in EV. Hence, in this study we examined the effects of EV exposure on the physiology of S. pneumoniae strain TIGR4. In order to differentiate between the effects of nicotine and nonnicotine components, we specifically compared the RNA-Seq profiles and virulence of TIGR4 exposed to vapor from nicotine-containing and nicotine-free e-liquid formulations. We observed that nicotine-containing EV augmented TIGR4 biofilms and altered expression of TIGR4 genes predominantly involved in metabolism and stress response. However, neither nicotine-containing nor nicotine-free EV affected TIGR4 virulence in a mouse model.
机译:电子烟(电子烟)蒸气(EV)暴露对呼吸微生物的生理学的影响没有完全定义。我们分析了暴露于含尼古丁和无尼古丁的E-液体制剂的蒸汽对肺炎链球菌菌株TIGR4的毒力和转录组的影响,一种病原体,即渐近的人鼻咽粘膜。 TIGR4预先置于含尼古丁的EV提取物(eve〜(+ NIC)),无尼古丁EV提取物(EVE〜(?NIC)),香烟烟雾提取物(CSE)或富含营养的胰蛋白酶( TS)肉汤(对照)。使用转录组测序(RNA测序[RNA-SEQ]),体外毒力测定和急性肺炎的体内小鼠模型探索治疗和控制菌株之间的差异。 RNA-SEQ型材的分析显示,与对照相比,在EVE〜(?NIC)中含有糖传输和代谢的表达的适度变化,而前夕〜(+ NIC)或CSE暴露改变了表达分别为264和982个基因,其中大部分都参与了代谢和应激反应。用对照TIGR4或用TIGR4进行急性肺炎的小鼠模型感染,PREEXPOSPAPESPAVESPOSPAPESPAVESPOVESPAVES(+ NIC),EVE〜(?NIC),或CSE没有显示出疾病参数的显着差异,例如细菌器官负担和呼吸系统细胞因子反应。有趣的是,TIGR4暴露于CSE或EVE〜(+ NIC)(但不是前夕〜(?NIC))表现出中等诱导生物膜形成。然而,没有一种治疗组在肺炎球菌疏水性或上皮细胞粘附中显示出显着的改变。总之,我们的研究报告说,暴露于EV的暴露显着以尼古丁依赖的方式改变了S.肺炎肺炎的转录组,而不会影响肺炎球菌毒力。分析卷烟吸烟和非莫斯莫氏成人和儿童的e-卷烟的普及越来越普及,以及最近的报告无毒相关的肺部疾病和死亡,有关e-卷烟蒸汽(EV)暴露的不良健康影响的进一步分析是有保证的。由于肺炎链球菌等致病性细菌可以将人的鼻咽癌作为共生,它们可能会受到EV中的生物活性化学物质的影响。因此,在这项研究中,我们研究了EV暴露对肺炎肺炎菌株TIGR4生理学的影响。为了区分尼古丁和非尼肽组分的影响,我们将RNA-SEQ谱和从含尼古丁和无尼古丁的E-液体制剂的蒸汽进行蒸气进行比较。我们观察到含有尼古丁的EV增强TIGR4生物膜并改变了TIGR4基因的表达,主要涉及代谢和应激反应。然而,在小鼠模型中既不含有含尼古丁也没有尼古丁的毒力影响TIGR4毒力。

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