首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Metabolomics evaluation of the impact of smokeless tobacco exposure on the oral bacterium Capnocytophaga sputigena
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Metabolomics evaluation of the impact of smokeless tobacco exposure on the oral bacterium Capnocytophaga sputigena

机译:代谢组学评估无烟烟草暴露对口腔细菌Capnocytophaga sputigena的影响

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摘要

The association between exposure to smokeless tobacco products (STP) and oral diseases is partially due to the physiological and pathological changes in the composition of the oral microbiome and its metabolic profile. However, it is not clear how STPs affect the physiology and ecology of oral microbiota. A UPLC/QTof-MS-based metabolomics study was employed to analyze metabolic alterations in oral bacterium, Capnocytophaga sputigena as a result of smokeless tobacco exposure and to assess the capability of the bacterium to metabolize nicotine. Pathway analysis of the metabolome profiles indicated that smokeless tobacco extracts caused oxidative stress in the bacterium. The metabolomics data also showed that the arginine-nitric oxide pathway was perturbed by the smokeless tobacco treatment. Results also showed that LC/MS was useful in identifying SW constituents and additives, including caffeine and many flavoring compounds. No significant changes in levels of nicotine and its major metabolites were found when C. sputigena was cultured in a nutrient rich medium, although hydroxylnicotine and cotinine N-oxide were detected in the bacterial metabolites suggesting that nicotine metabolism might be present as a minor degradation pathway in the bacterium. Study results provide new insights regarding the physiological and toxicological effects of smokeless tobacco on oral bacterium C. sputigena and associated oral health as well as measuring the ability of the oral bacterium to metabolize nicotine. Published by Elsevier Ltd.
机译:接触无烟烟草制品(STP)与口腔疾病之间的关联部分是由于口腔微生物组的组成及其代谢特征引起的生理和病理变化。然而,尚不清楚STPs如何影响口腔微生物的生理和生态。基于UPLC / QTof-MS的代谢组学研究被用于分析口腔细菌无烟烟草(Capnocytophaga sputigena)因无烟烟草暴露而引起的代谢变化,并评估细菌代谢尼古丁的能力。代谢组图谱的通路分析表明,无烟烟草提取物引起细菌中的氧化应激。代谢组学数据还表明,无烟烟草处理扰乱了精氨酸一氧化氮途径。结果还表明,LC / MS可用于鉴定SW成分和添加剂,包括咖啡因和许多调味剂。在富含营养的培养基中培养痰杆菌时,烟碱及其主要代谢物的水平没有显着变化,尽管细菌代谢物中检测到羟烟碱和可替宁N-氧化物,这表明烟碱代谢可能作为次要降解途径存在。在细菌中。研究结果为无烟烟草对口腔细菌C. sputigena和相关口腔健康的生理和毒理作用以及测量口腔细菌代谢尼古丁的能力提供了新的见解。由Elsevier Ltd.发布

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