Resveratrol inhibits coal dust nanoparticle-induced acute lung epithelial cell injury and chronic pulmonary fibrosis

Coal dust nanoparticles (CD-NPs) are a major risk factor for pneumoconiosis. We evaluated the protective effect of resveratrol against pulmonary fibrosis induced by CD-NPs in pneumoconiosis. Our results showed that CD-NPs exposure significantly reduced cell viability, inhibited proliferation, and induced apoptosis in type II alveolar cells, whereas resveratrol prevented these cellular changes. Lung tissue staining from a mouse model of CD-NPs-induced pneumoconiosis revealed that resveratrol decreased the inflammatory cell infiltration, fibrotic lesions, and decline in lung function caused by CD-NPs exposure. These findings provided an important experimental rationale for developing resveratrol into a novel preventive agent for pneumoconiosis.

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Publication Details

Journal
Toxicology and Industrial Health
Published
2026-09-09
DOI
https://doi.org/10.1177/07482337261486628
Primary Topic
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
Type
article
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Resveratrol inhibits coal dust nanoparticle-induced acute lung epithelial cell injury and chronic pulmonary fibrosis

Ruikai Wang, Amin Li, Ge Zhou
Toxicology and Industrial Health
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
article

Resveratrol inhibits coal dust nanoparticle-induced acute lung epithelial cell injury and chronic pulmonary fibrosis

Ruikai Wang, Amin Li, Ge Zhou
article en

Abstract

Coal dust nanoparticles (CD-NPs) are a major risk factor for pneumoconiosis. We evaluated the protective effect of resveratrol against pulmonary fibrosis induced by CD-NPs in pneumoconiosis. Our results showed that CD-NPs exposure significantly reduced cell viability, inhibited proliferation, and induced apoptosis in type II alveolar cells, whereas resveratrol prevented these cellular changes. Lung tissue staining from a mouse model of CD-NPs-induced pneumoconiosis revealed that resveratrol decreased the inflammatory cell infiltration, fibrotic lesions, and decline in lung function caused by CD-NPs exposure. These findings provided an important experimental rationale for developing resveratrol into a novel preventive agent for pneumoconiosis.

Toxicology and Industrial Health
Anhui University of Science and Technology (CN), Anhui Provincial Hospital (CN)
Openalex Percentile: Top 11%
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
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Resveratrol inhibits coal dust nanoparticle-induced acute lung epithelial cell injury and chronic pulmonary fibrosis — Ruikai Wang, Amin Li, et al. · Toxicology and Industrial Health (2026) | TGRS Research Map | TGRS