Chronic electronic cigarette exposure in mice induces features of COPD in a nicotine-dependent manner

Хроническое воздействие электронных сигарет на мышей вызывает признаки ХОБЛ зависимым от никотина образом
Itsaso García‐Arcos, Patrick Geraghty, Nathalie Baumlin, Michael Campos, Abdoulaye Dabo, Bakr Jundi, Neville Cummins, Edward Eden, Astrid Grosche, Matthias Salathé, Robert Foronjy
2016-08-24

airway hyper-reactivitydistal airspace enlargementelectronic cigarette exposurenicotine-dependent COPD featuresnormal human bronchial epithelial cells
BACKGROUND: The use of electronic (e)-cigarettes is increasing rapidly, but their lung health effects are not established. Clinical studies examining the potential long-term impact of e-cigarette use on lung health will take decades. To address this gap in knowledge, this study investigated the effects of exposure to aerosolised nicotine-free and nicotine-containing e-cigarette fluid on mouse lungs and normal human airway epithelial cells. METHODS: Mice were exposed to aerosolised phosphate-buffered saline, nicotine-free or nicotine-containing e-cigarette solution, 1-hour daily for 4 months. Normal human bronchial epithelial (NHBE) cells cultured at an air-liquid interface were exposed to e-cigarette vapours or nicotine solutions using a Vitrocell smoke exposure robot. RESULTS: Inhalation of nicotine-containing e-cigarettes increased airway hyper-reactivity, distal airspace enlargement, mucin production, cytokine and protease expression. Exposure to nicotine-free e-cigarettes did not affect these lung parameters. NHBE cells exposed to nicotine-containing e-cigarette vapour showed impaired ciliary beat frequency, airway surface liquid volume, cystic fibrosis transmembrane regulator and ATP-stimulated K+ ion conductance and decreased expression of FOXJ1 and KCNMA1. Exposure of NHBE cells to nicotine for 5 days increased interleukin (IL)-6 and IL-8 secretion. CONCLUSIONS: Exposure to inhaled nicotine-containing e-cigarette fluids triggered effects normally associated with the development of COPD including cytokine expression, airway hyper-reactivity and lung tissue destruction. These effects were nicotine-dependent both in the mouse lung and in human airway cells, suggesting that inhaled nicotine contributes to airway and lung disease in addition to its addictive properties. Thus, these findings highlight the potential dangers of nicotine inhalation during e-cigarette use.
1
Four months of daily inhalation of nicotine-containing e-cigarette aerosol induced COPD-like changes in mice, including airway hyper-reactivity and distal airspace enlargement.
2
Human airway epithelial cells exposed to nicotine-containing vapor showed impaired ciliary function, airway surface liquid regulation, CFTR activity, and ATP-stimulated potassium conductance.
3
Nicotine-containing aerosol increased mucin production and expression of cytokines and proteases, whereas nicotine-free aerosol did not alter these lung parameters.
4
Nicotine-containing vapor reduced FOXJ1 and KCNMA1 expression, while five-day nicotine exposure increased IL-6 and IL-8 secretion in human airway epithelial cells.
5
The observed airway and lung abnormalities were nicotine-dependent, indicating that inhaled nicotine may contribute to COPD-related disease beyond its addictive effects.

Mouse lungs and normal human airway epithelial cells exposed to aerosolised nicotine-containing or nicotine-free e-cigarette fluids

Nicotine-dependent COPD-like airway and lung injury, including airway hyper-reactivity, distal airspace enlargement, mucin production, inflammatory cytokine and protease expression, and impaired epithelial ion transport and ciliary function

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2016-08-24
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Itsaso García‐Arcos
Patrick Geraghty
Nathalie Baumlin
Michael Campos
Abdoulaye Dabo
Bakr Jundi
Neville Cummins
Edward Eden
Astrid Grosche
Matthias Salathé
Robert Foronjy
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