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电子烟对3D组织工程模型中口腔微生物组和代谢组的影响

The Effects of Electronic Cigarettes on Oral Microbiome and Metabolome in 3D Tissue-Engineered Models.

作者信息

Maan Meenu, U Jisha Pillai, Mohamed Dalia Alsadig, Jalaleddine Nour, Abuzayeda Moosa, Khamis Amar Hassan, Dutta Mainak, Moharamzadeh Keyvan

机构信息

Department of Restorative Dentistry, Hamdan Bin Mohammed College of Dental Medicine (HBMCDM), Mohammed Bin Rashid University of Medicine and Health Sciences (MBRU), Dubai Health, Dubai, United Arab Emirates; Department of Biophysics, New York University-Abu Dhabi, Abu Dhabi, United Arab Emirates.

Department of Biotechnology, Birla Institute of Technology and Science Pilani-Dubai Campus, Academic City, Dubai, United Arab Emirates.

出版信息

Int Dent J. 2025 Jun;75(3):2239-2252. doi: 10.1016/j.identj.2024.12.002. Epub 2024 Dec 31.

Abstract

BACKGROUND AND AIM

Recent studies have shown that electronic cigarettes (ECs) use disrupts the oral microbiome composition and diversity, impairing the metabolic pathways of the mucosal cells. However, to date, no reports have evaluated the role of EC exposure in the context of oral metabolome. Hence, the aim of this study was to investigate the role of EC aerosol exposure in the dysregulation of the oral microbiome and metabolome profile using in vitro 3D organotypic models of human oral mucosa.

METHODS

3D tissue-engineered human oral mucosa models were generated and infected with oral microbes obtained from saliva of a healthy donor. The epithelial surface of the oral mucosal models was exposed directly to the EC aerosol (flavoured; with and without nicotine) as it came out of a simulated activated device that mimicked the clinical situation. A comprehensive assessment of oral microbiome community composition by bacterial 16S rRNA gene sequencing was performed. A gas chromatography-based mass spectrometry analysis was also conducted to identify the effect of vaping on the oral metabolome profile.

RESULTS

A higher alpha diversity in flavoured EC with nicotine groups was observed compared to controls, with notable differences in bacterial taxa abundance. Metabolomics analysis further demonstrated distinct clustering of control, EC with flavoured nicotine, and flavoured EC groups, confirming 13 metabolites that were statistically higher in levels in flavoured EC with nicotine group, indicating the adverse effects of nicotine on the oral mucosa model. Altered metabolites were mainly enriched in pathways associated with oral cancer progression.

CONCLUSION

This study underscores the significant impact of EC use on oral health, highlighting alterations in the oral microbiome, bacterial composition, and metabolite profiles via a clinically relevant in vitro 3D organotypic model of human oral mucosa.

摘要

背景与目的

近期研究表明,使用电子烟会破坏口腔微生物群的组成和多样性,损害黏膜细胞的代谢途径。然而,迄今为止,尚无报告评估电子烟暴露在口腔代谢组背景下的作用。因此,本研究的目的是使用人口腔黏膜的体外3D器官型模型,研究电子烟气溶胶暴露在口腔微生物群和代谢组谱失调中的作用。

方法

构建3D组织工程化人口腔黏膜模型,并用从健康供体唾液中获取的口腔微生物进行感染。口腔黏膜模型的上皮表面直接暴露于从模拟激活装置中出来的电子烟气溶胶(有香味;含或不含尼古丁),该装置模拟临床情况。通过细菌16S rRNA基因测序对口腔微生物群落组成进行综合评估。还进行了基于气相色谱的质谱分析,以确定吸电子烟对口腔代谢组谱的影响。

结果

与对照组相比,含尼古丁的有香味电子烟组的α多样性更高,细菌分类群丰度存在显著差异。代谢组学分析进一步表明,对照组、含香味尼古丁的电子烟组和有香味电子烟组有明显的聚类,确认了13种代谢物在含尼古丁的有香味电子烟组中的水平在统计学上更高,表明尼古丁对口腔黏膜模型有不良影响。改变的代谢物主要富集在与口腔癌进展相关的途径中。

结论

本研究强调了使用电子烟对口腔健康的重大影响,通过临床上相关的人口腔黏膜体外3D器官型模型突出了口腔微生物群、细菌组成和代谢物谱的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d873/12142768/410392edb61c/gr1.jpg

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