Szostak Justyna, Boué Stéphanie, Talikka Marja, Guedj Emmanuel, Martin Florian, Phillips Blaine, Ivanov Nikolai V, Peitsch Manuel C, Hoeng Julia
Philip Morris International R&D, Philip Morris Products S.A., Quai Jeanrenaud 5, 2000 Neuchâtel, Switzerland.
Philip Morris International Research Laboratories Pte Ltd, Science Park II, Singapore.
Food Chem Toxicol. 2017 Mar;101:157-167. doi: 10.1016/j.fct.2017.01.013. Epub 2017 Jan 19.
Experimental studies clearly demonstrate a causal effect of cigarette smoking on cardiovascular disease. To reduce the individual risk and population harm caused by smoking, alternative products to cigarettes are being developed. We recently reported on an apolipoprotein E-deficient (Apoe) mouse inhalation study that compared the effects of exposure to aerosol from a candidate modified risk tobacco product, Tobacco Heating System 2.2 (THS2.2), and smoke from the reference cigarette (3R4F) on pulmonary and vascular biology. Here, we applied a transcriptomics approach to evaluate the impact of the exposure to 3R4F smoke and THS2.2 aerosol on heart tissues from the same cohort of mice. The systems response profiles demonstrated that 3R4F smoke exposure led to time-dependent transcriptomics changes (False Discovery Rate (FDR) < 0.05; 44 differentially expressed genes at 3-months; 491 at 8-months). Analysis of differentially expressed genes in the heart tissue indicated that 3R4F exposure induced the downregulation of genes involved in cytoskeleton organization and the contractile function of the heart, notably genes that encode beta actin (Actb), actinin alpha 4 (Actn4), and filamin C (Flnc). This was accompanied by the downregulation of genes related to the inflammatory response. None of these effects were observed in the group exposed to THS2.2 aerosol.
实验研究清楚地证明了吸烟对心血管疾病有因果效应。为了降低吸烟对个体造成的风险以及对人群的危害,正在研发香烟的替代产品。我们最近报道了一项载脂蛋白E缺陷(Apoe)小鼠吸入研究,该研究比较了暴露于候选改良风险烟草产品烟草加热系统2.2(THS2.2)产生的气溶胶以及对照香烟(3R4F)产生的烟雾对肺部和血管生物学的影响。在此,我们应用转录组学方法来评估暴露于3R4F烟雾和THS2.2气溶胶对同一批小鼠心脏组织的影响。系统反应图谱表明,暴露于3R4F烟雾会导致随时间变化的转录组学改变(错误发现率(FDR)<0.05;3个月时有44个差异表达基因;8个月时有491个)。对心脏组织中差异表达基因的分析表明,暴露于3R4F会导致参与细胞骨架组织和心脏收缩功能的基因下调,特别是编码β肌动蛋白(Actb)、辅肌动蛋白α4(Actn4)和细丝蛋白C(Flnc)的基因。这伴随着与炎症反应相关基因的下调。在暴露于THS2.2气溶胶的组中未观察到这些效应。