4.5 Article

Impact of e-cigarette aerosol on primary human alveolar epithelial type 2 cells

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00503.2021

关键词

alveolar type II cells; e-cigarettes; EVALI; inflammation; pulmonary edema

资金

  1. National Institutes of Health (NIH) [U54HL147127]

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This study investigates the impact of e-cigarette aerosol on human lung alveolar epithelial cells. It suggests that certain e-cigarette aerosols have direct toxic effects on cells and can affect gene expression after long-term exposure.
Electronic cigarettes (e-cigarettes) are designed to simulate combustible cigarette smoking and to aid in smoking cessation. Although the number of e-cigarette users has been increasing, the potential health impacts and biological effects of e -ciga-rettes are still not fully understood. Previous research has focused on the biological effects of e-cigarettes on lung cancer cell lines and distal airway epithelial cells; however, there have been few published studies on the effect of e-cigarettes on primary lung alveolar epithelial cells. The primary purpose of this study was to investigate the direct effect of e-cigarette aerosol on primary human lung alveolar epithelial type 2 (AT2) cells, both alone and in the presence of viral infection. The Melo-3 atomizer caused direct AT2 cell toxicity, whereas the more popular Juul pod's aerosol did not have a detectable cytotoxic effect on AT2 cells. Juul nicotine aerosol also did not increase short-term susceptibility to viral infection. However, 3 days of expo-sure upregulated genes central to the generation of reactive oxygen species, lipid peroxidation, and carcinogen metabolism and downregulated key innate immune system genes related to cytokine and chemokine signaling. These findings have implications for the potentially injurious impact of long-term use of popular low-power e-cigarette pods on the human alveolar epithelium. Gene expression data might be an important endpoint for evaluating the potential harmful effects of vaping devices that do not cause overt toxicity.

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