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候选减害烟草产品气溶胶与香烟烟雾对人器官型小气道培养物的比较效应:一种系统毒理学方法

Comparative effects of a candidate modified-risk tobacco product Aerosol and cigarette smoke on human organotypic small airway cultures: a systems toxicology approach.

作者信息

Iskandar Anita R, Martinez Yannick, Martin Florian, Schlage Walter K, Leroy Patrice, Sewer Alain, Torres Laura Ortega, Majeed Shoaib, Merg Celine, Trivedi Keyur, Guedj Emmanuel, Frentzel Stefan, Mathis Carole, Ivanov Nikolai V, Peitsch Manuel C, Hoeng Julia

机构信息

PMI R&D , Philip Morris Products S.A. (Part of Philip Morris International group of companies) , Quai Jeanrenaud 5 , CH-2000 Neuchâtel , Switzerland . Email:

Biology consultant , Max-Baermann-Str. 21 , 51429 Bergisch Gladbach , Germany.

出版信息

Toxicol Res (Camb). 2017 Sep 28;6(6):930-946. doi: 10.1039/c7tx00152e. eCollection 2017 Nov 1.

Abstract

Using an human small airway epithelium model, we assessed the biological impact of an aerosol from a candidate modified-risk tobacco product, the tobacco heating system (THS) 2.2, to investigate the potential reduced risk of THS2.2 aerosol exposure compared with cigarette smoke. Following the recommendations of the Institute of Medicine and the Tobacco Product Assessment Consortium, in which modified-risk tobacco products assessment should be performed in comparison with standard conventional products, the effects of the THS2.2 aerosol exposure on the small airway cultures were compared with those of 3R4F cigarette smoke. We used a approach whereby elucidation of toxic effects is derived not only from functional assay readouts but also from omics technologies. Cytotoxicity, ciliary beating function, secretion of pro-inflammatory mediators and histological assessment represented functional assays. The omics data included transcriptomic and miRNA profiles. Exposure-induced perturbations of causal biological networks were computed from the transcriptomic data. The results showed that THS2.2 aerosol exposure at the tested doses elicited lower cytotoxicity levels and lower changes in the secreted pro-inflammatory mediators than 3R4F smoke. Although THS2.2 exposure elicited alterations in the gene expression, a higher transcriptome-induced biological impact was observed following 3R4F smoke: The effects of THS2.2 aerosol exposure, if observed, were mostly transient and diminished more rapidly after exposure than those of 3R4F smoke. The study demonstrated that the systems toxicology approach can reveal changes at the cellular level that would be otherwise not detected from functional assays, thus increasing the sensitivity to detect potential toxicity of a treatment/exposure.

摘要

我们使用人小气道上皮模型,评估了候选减害烟草产品——烟草加热系统(THS)2.2产生的气溶胶的生物学影响,以研究与香烟烟雾相比,THS2.2气溶胶暴露的潜在风险降低情况。按照医学研究所和烟草产品评估联盟的建议,即减害烟草产品评估应与标准传统产品进行比较,将THS2.2气溶胶暴露对小气道培养物的影响与3R4F香烟烟雾的影响进行了比较。我们采用了一种方法,即不仅从功能测定读数,而且从组学技术来阐明毒性作用。细胞毒性、纤毛摆动功能、促炎介质分泌和组织学评估代表功能测定。组学数据包括转录组和miRNA谱。从转录组数据计算暴露诱导的因果生物网络扰动。结果表明,在测试剂量下,THS2.2气溶胶暴露引起的细胞毒性水平低于3R4F烟雾,分泌的促炎介质变化也较小。尽管THS2.2暴露引起了基因表达的改变,但3R4F烟雾后观察到更高的转录组诱导的生物学影响:THS2.2气溶胶暴露的影响(如果观察到)大多是短暂的,暴露后比3R4F烟雾更快减弱。该研究表明,系统毒理学方法可以揭示细胞水平上的变化,而这些变化在功能测定中无法检测到,从而提高了检测治疗/暴露潜在毒性的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e69/6062162/cc70ffb95a6e/c7tx00152e-f1.jpg

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