Ferro Magali P, Leclerc Lara, Sleiman Mohamad, Marchiori Bastien, Pourchez Jérémie, Owens Roisin M, Ramuz Marc
Department of Bioelectronics, Mines Saint-Étienne, 880 route de Mimet, F-13541, Gardanne, France.
Department of Biomaterials and Inhaled Particles, Mines Saint-Étienne, Université Lyon, Université Jean Monnet, INSERM, U 1059 Sainbiose, Centre CIS, 158 cours Fauriel, F-42023, Saint-Étienne, France.
Adv Biosyst. 2019 Mar;3(3):e1800249. doi: 10.1002/adbi.201800249. Epub 2018 Dec 21.
E-cigarettes have been suggested as a potentially healthier alternative to cigarettes based on studies using cell viability, DNA damage, and transcriptional response assays. However, little is known about the effect of e-cigarette aerosols on the integrity of the tracheal epithelium, specifically with respect to barrier resistance. This is partly due to the lack of methods for monitoring epithelia at the air-liquid interface (ALI), i.e., under physiological conditions. Here, it is shown that an organic electrochemical transistor can be adapted for the measurement of barrier resistance at the ALI. This technology enables accurate, continuous quantification of tracheal barrier integrity through the use of a conformable gate electrode placed on top of the cell-secreted mucus, obviating the need for addition of culture medium or buffer as a conductance medium for rigid electrodes. This platform allows for the detection of a dose-dependent, rapid decrease in barrier resistance of an in vitro model of human bronchial epithelium (MucilAir) after E-cigarette aerosols exposure. The system represents a powerful tool to study tissue responses of the human airway epithelium to inhaled smoke. The same technology will have broad applications for toxicology studies on other tissues with ALI, including other airway tissues and skin.
基于使用细胞活力、DNA损伤和转录反应分析的研究,电子烟被认为是一种可能比香烟更健康的替代品。然而,关于电子烟气溶胶对气管上皮完整性的影响,特别是在屏障阻力方面,人们知之甚少。部分原因是缺乏在气液界面(ALI),即在生理条件下监测上皮细胞的方法。在此表明,有机电化学晶体管可适用于测量ALI处的屏障阻力。这项技术通过使用放置在细胞分泌的黏液顶部的贴合式栅电极,能够准确、连续地量化气管屏障的完整性,无需添加培养基或缓冲液作为刚性电极的导电介质。该平台能够检测到电子烟气溶胶暴露后,人支气管上皮体外模型(MucilAir)的屏障阻力呈剂量依赖性快速下降。该系统是研究人类气道上皮对吸入烟雾的组织反应的有力工具。同样的技术将在对具有ALI的其他组织,包括其他气道组织和皮肤的毒理学研究中具有广泛应用。