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Automated Measurement of Pulmonary Emphysema and Small Airway Remodeling in Cigarette Smoke-exposed Mice
Published on: January 16, 2015
A Metabolomics Approach to Sulforaphane Efficacy in Secondhand Smoking-Induced Pulmonary Damage in Mice
Hongyoon Kim1,2, Sunju Yoo3, Jung-Dae Lee1,2
1College of Pharmacy, Dankook University, 119 Dandae-ro, Cheonan 31116, Korea.
Abstract:
Sulforaphane is an isocyanate abundantly present in cruciferous vegetables. In the present study, we aimed to investigate the effects of sulforaphane on secondhand smoking (SHS)-induced pulmonary damage in mice. Additionally, a metabolomic study was performed to identify biomarkers associated with pulmonary disease using proton nuclear magnetic resonance (1H-NMR) analysis. Male C57BL6J mice were divided into a control group, an SHS exposure group (positive control group, PC), and a sulforaphane treatment group exposed to secondhand smoke (SS) (n = 5 per group). The PC and SS groups were exposed to secondhand smoke in a chamber twice daily for four weeks. Mice in the SS group were orally administered sulforaphane (50 mg/kg) for four weeks during secondhand smoke exposure. Histopathological examination of the lungs revealed pulmonary damage in PC mice, including loss of bronchial epithelial cells, bronchial wall thickening, and infiltration of macrophages. In contrast, mice in the SS group showed little or no epithelial thickening, thereby exhibiting reduced lung damage. Mouse serum and lung tissues were collected and analyzed to determine changes in endogenous metabolites using 1H-NMR. After target profiling, we identified metabolites showing the same tendency in the serum and lung as biomarkers for SHS-induced pulmonary damage, including taurine, glycerol, creatine, arginine, and leucine. As a result of histopathological examination, sulforaphane might inhibit SHS-induced lung damage, and metabolite analysis results suggest potential biomarkers for SHS-induced pulmonary damage in mice.
Insights
Sulforaphane, a compound found in cruciferous vegetables, may protect against secondhand smoke (SHS) lung damage in mice. Metabolomic analysis identified potential biomarkers for SHS-induced pulmonary disease.
Area of Science:
- Environmental Health
- Toxicology
- Nutritional Science
Background:
- Secondhand smoke (SHS) exposure is a significant risk factor for pulmonary diseases.
- Cruciferous vegetables contain sulforaphane, a compound with potential therapeutic properties.
- Investigating protective agents against SHS-induced lung damage is crucial for public health.
Purpose of the Study:
- To evaluate the protective effects of sulforaphane against SHS-induced pulmonary damage in a mouse model.
- To identify potential metabolic biomarkers for SHS-induced pulmonary disease using metabolomics.
Main Methods:
- Male C57BL6J mice were exposed to SHS for four weeks.
- One group received daily oral administration of sulforaphane (50 mg/kg) during SHS exposure.
- Lung histopathology and serum/lung tissue metabolomics (¹H-NMR) were performed.
Main Results:
- SHS exposure caused significant pulmonary damage, including bronchial epithelial cell loss and wall thickening.
- Sulforaphane treatment markedly reduced SHS-induced lung damage, with minimal epithelial thickening observed.
- Metabolomic analysis identified taurine, glycerol, creatine, arginine, and leucine as potential biomarkers for SHS-induced pulmonary damage.
Conclusions:
- Sulforaphane demonstrates a protective effect against SHS-induced lung injury in mice.
- Identified metabolites may serve as valuable biomarkers for early detection and monitoring of SHS-related pulmonary damage.

