China National Tobacco Quality Supervision &Test Center, Zhengzhou, China; Key Laboratory of Tobacco Biological Effects, Zhengzhou, China; Beijing Institute of Life Science and Technology, Beijing, China; Key Labortory of Tobacco Biological Effects and Biosynthesis, Beijing, China.
China National Tobacco Quality Supervision &Test Center, Zhengzhou, China; Key Laboratory of Tobacco Biological Effects, Zhengzhou, China.
Toxicol In Vitro. 2024 Feb;94:105708. doi: 10.1016/j.tiv.2023.105708. Epub 2023 Oct 6.
It is still a controversial topic about evaluating whether heated tobacco products (HTP) really reduce harm, which involves the choice of an experimental model. Here, a three-dimensional (3D) biomimetic chip model was used to evaluate the toxicity of aerosols came from HTP and smoke produced by cigarettes (Cig). Based on cell-related experiments, we found that the toxicity of Cig smoke extract diluted four times was also much higher than that of undiluted HTP, showing higher oxidative stress response and cause mitochondrial dysfunction. Meanwhile, both tobacco products all affect the tricarboxylic acid cycle (TCA), which is manifested by a significant decrease in the mRNA expression of TCA key rate-limiting enzymes. Summarily, 3D Biomimetic chip technology can be used as an ideal model to evaluate HTP. It can provide important data for tobacco risk assessment when 3D chip model was used. Our experimental results showed that HTP may be less harmful than tobacco cigarettes, but it does show significant cytotoxicity with the increase of dose. Therefore, the potential clinical effects of HTP on targeted organs such as lung should be further studied.
关于加热不燃烧烟草制品(HTP)是否真的降低危害,这仍然是一个有争议的话题,其中涉及到实验模型的选择。在这里,我们使用了一种三维(3D)仿生芯片模型来评估 HTP 和香烟(Cig)产生的气溶胶的毒性。基于细胞相关实验,我们发现香烟烟雾提取物稀释四倍后的毒性仍然远高于未稀释的 HTP,表现出更高的氧化应激反应并导致线粒体功能障碍。同时,两种烟草制品都影响三羧酸循环(TCA),这表现在 TCA 关键限速酶的 mRNA 表达显著降低。总之,3D 仿生芯片技术可作为评估 HTP 的理想模型。当使用 3D 芯片模型时,它可以为烟草风险评估提供重要数据。我们的实验结果表明,HTP 可能比香烟的危害小,但随着剂量的增加,它确实表现出明显的细胞毒性。因此,应进一步研究 HTP 对肺部等靶向器官的潜在临床影响。