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使用人原代支气管上皮细胞对一种代表性电子烟液配方进行系统毒理学评估。

Systems toxicology assessment of a representative e-liquid formulation using human primary bronchial epithelial cells.

作者信息

Marescotti Diego, Mathis Carole, Belcastro Vincenzo, Leroy Patrice, Acali Stefano, Martin Florian, Dulize Rémi, Bornand David, Peric Dariusz, Guedj Emmanuel, Ortega Torres Laura, Biasioli Matteo, Fuhrimann Matthieu, Fernandes Estela, Frauendorfer Felix, Gonzalez Suarez Ignacio, Sciuscio Davide, Ivanov Nikolai V, Peitsch Manuel C, Hoeng Julia

机构信息

PMI R&D, Philip Morris Products S.A., Quai Jeanrenaud 5, CH-2000 Neuchâtel, Switzerland.

出版信息

Toxicol Rep. 2019 Nov 25;7:67-80. doi: 10.1016/j.toxrep.2019.11.016. eCollection 2020.

Abstract

The development of reduced-risk products aims to provide alternatives to cigarettes that present less risk of harm for adult smokers. Responsible use of flavoring substances in these products may fulfill an important role in product acceptance. While most flavoring substances used in such products are also used by the food industry and are considered safe when ingested, their impact when inhaled may require further assessment. To aid in such an assessment, a three-step approach combining real-time cellular analysis, phenotypic high-content screening assays, and gene expression analysis was developed and tested in normal human bronchial epithelial cells with 28 flavoring substances commonly used in e-liquid formulations, dissolved individually or as a mixture in a base solution composed of propylene glycol, vegetable glycerin, and 0.6% nicotine. By employing this approach, we identified individual flavoring substances that potentially contribute greatly to the overall mixture effect (citronellol and alpha-pinene). By assessing modified mixtures, we showed that, although cytotoxic effects were found when assessed individually, alpha-pinene did not contribute to the overall mixture cytotoxicity. Most of the cytotoxic effect appeared to be attributable to citronellol, with the remaining substances contributing due to synergistic effects. We developed and used different scoring methods (Tox-Score, Phenotypic Score, and Biological Impact Factor/Network Perturbation Amplitude), ultimately enabling a ranking based on cytotoxicity, phenotypic outcome, and molecular network perturbations. This case study highlights the benefits of testing both individual flavoring substances and mixtures for e-liquid flavor assessment and emphasized the importance of data sharing for the benefit of consumer safety.

摘要

低风险产品的开发旨在为成年吸烟者提供危害风险更低的香烟替代品。在这些产品中合理使用调味物质可能在产品接受度方面发挥重要作用。虽然此类产品中使用的大多数调味物质食品工业也会使用,并且摄入时被认为是安全的,但吸入时它们的影响可能需要进一步评估。为了辅助这种评估,开发了一种三步法,该方法结合实时细胞分析、表型高内涵筛选测定和基因表达分析,并在正常人支气管上皮细胞中使用电子烟液配方中常用的28种调味物质进行了测试,这些调味物质单独或作为混合物溶解在由丙二醇、植物甘油和0.6%尼古丁组成的基础溶液中。通过采用这种方法,我们确定了对整体混合物效应可能有很大贡献的个别调味物质(香茅醇和α-蒎烯)。通过评估改良混合物,我们发现,虽然单独评估时发现有细胞毒性作用,但α-蒎烯对整体混合物的细胞毒性没有贡献。大部分细胞毒性作用似乎归因于香茅醇,其余物质因协同作用而产生影响。我们开发并使用了不同的评分方法(毒性评分、表型评分和生物影响因子/网络扰动幅度),最终能够根据细胞毒性、表型结果和分子网络扰动进行排名。本案例研究突出了对电子烟液调味评估中的个别调味物质和混合物进行测试的益处,并强调了为消费者安全进行数据共享的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f02b/6921209/888fe34fbcb5/ga1.jpg

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