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Updated: Sep 23, 2025

Cigarette Smoke Exposure in Mice using a Whole-Body Inhalation System
Published on: October 22, 2020
ROS-Responsive miR-150-5p Downregulation Contributes to Cigarette Smoke-Induced COPD via Targeting IRE1α
Mengchan Zhu1, Ling Ye1, Guiping Zhu1
1Department of Pulmonary and Critical Care Medicine, Zhongshan Hospital, Fudan University, Shanghai, China.
Abstract:
MicroRNAs (miRNAs) have been reported in human diseases, in which chronic obstructive pulmonary disease (COPD) is included. Herein, we assessed the role along with the possible mechanisms of miR-150-5p in cigarette smoke- (CS-) induced COPD. The plasma miR-150-5p expression was lower in patients with COPD and acute exacerbation of COPD (AECOPD) and was related to disease diagnosis, disease severity, and lung function. Consistently, exposure to CS for 3 months or 3 days reduced miR-150-5p in the plasma and lung tissues of mice, and CS extract (CSE) inhibited miR-150-5p in human bronchial epithelial cells (HBECs) in a concentration along with time-dependent approach. In vitro, miR-150-5p overexpression decreased the contents of inflammatory factors interleukin- (IL-) 6, IL-8 along with cyclooxygenase-2 (COX-2), and endoplasmic reticulum (ER) stress markers glucose-regulated protein (GRP) 78 and C/-EBP homologous protein (CHOP) and promoted cell migrate. Mechanistically, miR-150-5p could bind with the 3'-untranslated region (UTR) of inositol requiring enzyme 1α (IRE1α), while IRE1α overexpression obliterated the impacts of miR-150-5p. Besides, N-acetyl-cysteine (NAC) reversed CSE-induced miR-150-5p downregulation and its downstream effects. In vivo, miR-150-5p overexpression counteracted CS-triggered IRE1α upregulation, inflammation, and ER stress in the lung tissues of mice. In conclusion, our findings illustrated that ROS-mediated downregulation of miR-150-5p led to CS-induced COPD by inhibiting IRE1α expression, suggesting to serve as a useful biomarker for diagnosing and treating COPD.
Insights
Low miR-150-5p levels are linked to chronic obstructive pulmonary disease (COPD). This microRNA combats cigarette smoke-induced COPD by targeting IRE1α, suggesting it as a potential diagnostic and therapeutic biomarker.
Area of Science:
- Biochemistry
- Molecular Biology
- Pulmonology
Background:
- MicroRNAs (miRNAs) play roles in human diseases, including chronic obstructive pulmonary disease (COPD).
- Cigarette smoke (CS) is a primary risk factor for COPD development and progression.
Purpose of the Study:
- To investigate the role and underlying mechanisms of miR-150-5p in CS-induced COPD.
- To evaluate miR-150-5p as a potential biomarker for COPD diagnosis and treatment.
Main Methods:
- Assessed plasma miR-150-5p expression in COPD patients and mice exposed to CS.
- Utilized human bronchial epithelial cells (HBECs) and mouse models to study miR-150-5p function and regulation.
- Investigated the interaction between miR-150-5p and IRE1α (inositol requiring enzyme 1α) using molecular biology techniques.
- Evaluated the effects of N-acetyl-cysteine (NAC) on CS-induced changes.
Main Results:
- Plasma miR-150-5p was downregulated in COPD patients and mice exposed to CS, correlating with disease severity and lung function.
- miR-150-5p overexpression in vitro reduced inflammatory factors and endoplasmic reticulum (ER) stress markers.
- miR-150-5p directly targets IRE1α, and its downregulation by CS is mediated by reactive oxygen species (ROS).
- In vivo, miR-150-5p overexpression ameliorated CS-induced lung inflammation and ER stress.
Conclusions:
- Downregulation of miR-150-5p, mediated by ROS, contributes to CS-induced COPD by upregulating IRE1α.
- miR-150-5p demonstrates potential as a biomarker for diagnosing and treating COPD.
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