Role of diabetes in lung injury from acute exposure to electronic cigarette, heated tobacco product, and combustible cigarette aerosols in an animal model

Abstract

Background Patients with diabetes are more vulnerable to the detrimental respiratory effects of combustible cigarette smoke (CS) when compared to the general population. Electronic cigarettes (ECIG) and heated tobacco products (HTP) are marketed as less harmful alternatives to CS. In this study, we compared the effects of acute ECIG, HTP and CS exposure on the lungs of type II diabetes versus non-diabetic mice in an animal model. Methods Type II Diabetic (Diab) and Non-Diabetic (Non-Diab) mice were divided into Control, ECIG, HTP and CS groups. Animals were exposed for 6 hrs./day to either air, ECIG, HTP or CS for seven days. Lung injury was determined by a) histopathology, b) wet to dry ratio, c) albumin concentration in bronchoalveolar lavage fluid, d) expression of TNF-α, IL-6, and IL-1 β, e) reactive oxygen species production (ROS), and f) assessment of cellular apoptosis. Results Lung histology revealed increased edema and inflammatory cells in diabetic mice exposed to ECIG, HTP and CS. The expression of Inflammatory mediators was, in general, more significant in the Diabetic groups as well. TNF-α expression, for example, was upregulated in Diab + ECIG but not in Non-Diab + ECIG. ROS was significantly increased in Diab + CS, less in Non-Diab + CS and weakly noted in ECIG + Diab. Significant albumin leak was observed in Diab and Non-Diab HTP-exposed animals. CS exposure worsened lung injury in Diab when compared to Non-Diab mice. Conclusion Comorbid medical conditions like diabetes may amplify ill effects of CS, ECIG or HTP exposure. © 2021 Daou et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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Aerosols, Albumins, Animals, Bronchoalveolar lavage fluid, Cigarette smoking, Diabetes mellitus, type 2, Disease models, animal, Electronic nicotine delivery systems, Female, Interleukin-6, Lung, Lung injury, Mice, Mice, transgenic, Oxidative stress, Reactive oxygen species, Tobacco products, Tumor necrosis factor-alpha, Albumin, Interleukin 1beta, Interleukin 6, Reactive oxygen metabolite, Tumor necrosis factor, Albuminoid, Adult, Aerosol, Animal cell, Animal experiment, Animal model, Animal tissue, Apoptosis, Article, Controlled study, Lung weight, Male, Mouse, Non insulin dependent diabetes mellitus, Nonhuman, Protein expression, Short term exposure, Tobacco, Tunel assay, Upregulation, Adverse event, Animal, Chemistry, Disease model, Electronic cigarette, Genetics, Metabolism, Pathology, Transgenic mouse

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