PMI R&D, Philip Morris Products S.A., Quai Jeanrenaud 5, CH-2000 Neuchâtel, Switzerland.
PMI R&D, Philip Morris Products S.A., Quai Jeanrenaud 5, CH-2000 Neuchâtel, Switzerland.
Food Chem Toxicol. 2019 Mar;125:252-270. doi: 10.1016/j.fct.2018.12.056. Epub 2019 Jan 2.
Swedish snus is a smokeless tobacco product that contains reduced levels of harmful compounds compared with cigarette smoke. In Sweden, where snus use exceeds smoking among men, relatively low rates of major smoking-related diseases have been recorded. To better understand how snus use could align with current tobacco harm reduction strategies, its potential mechanisms of toxicity must be investigated. This study aimed to determine, via a systems toxicology approach, the biological impact of repeated 72-hour exposure of human gingival epithelial organotypic cultures to extracts from both a commercial and a reference snus and the total particulate matter (TPM) from cigarette smoke. At concentrations relevant for human use, cultures treated with snus extracts induced mild, generally reversible biological changes, while TPM treatment induced substantial morphological and inflammatory alterations. Network enrichment analysis and integrative analysis of the global mRNA and miRNA expression profiles indicated a limited and mostly transient impact of the snus extracts, in particular on xenobiotic metabolism, while the effects of TPM were marked and sustained over time. High-confidence miRNAs that might be related to pathological conditions in vivo were identified. This study highlights the limited biological impact of Swedish snus extract on human organotypic gingival cultures.
瑞典鼻烟是一种无烟烟草制品,其所含的有害化合物水平低于香烟烟雾。在瑞典,鼻烟的使用量超过了男性吸烟量,因此记录到的与吸烟有关的主要疾病的发病率相对较低。为了更好地了解鼻烟的使用如何符合当前的烟草减害策略,必须研究其潜在的毒性机制。本研究旨在通过系统毒理学方法,确定人牙龈上皮器官培养物在 72 小时内重复暴露于商业鼻烟和参考鼻烟提取物以及香烟烟雾总颗粒物(TPM)后的生物学影响。在与人类使用相关的浓度下,用鼻烟提取物处理的培养物引起了轻度、通常是可逆的生物学变化,而 TPM 处理则引起了明显的形态和炎症改变。网络富集分析和对全球 mRNA 和 miRNA 表达谱的综合分析表明,鼻烟提取物的影响有限且大多是短暂的,特别是对异生物质代谢,而 TPM 的影响则明显且随时间持续。确定了一些可能与体内病理状况有关的高可信度 miRNA。本研究强调了瑞典鼻烟提取物对人器官型牙龈培养物的生物学影响有限。