Cordyceps sinensis ameliorates idiopathic pulmonary fibrosis in mice via inhibiting mitochondrion‐mediated oxidative stress

Author:

Zhang Ying1,Zhou Lirun1,Cheng Guangqing1,Zhou Yanyan1,Guo Qiuyan1,Wu Jiangpeng1,Wong Yin K.2,Zhang Junzhe1,Tang Huan1ORCID,Wang Jigang134ORCID

Affiliation:

1. State Key Laboratory for Quality Ensurance and Sustainable Use of Dao‐di Herbs,Artemisinin Research Center, and Institute of Chinese Materia Medica China Academy of Chinese Medical Sciences Beijing China

2. Department of Biological Sciences National University of Singapore Singapore Singapore

3. Department of Nephrology, Shenzhen Key Laboratory of Kidney Diseases, and Shenzhen Clinical Research Centre for Geriatrics, Shenzhen People's Hospital, The First Affiliated Hospital Southern University of Science and Technology Shenzhen China

4. State Key Laboratory of Antiviral Drugs, School of Pharmacy Henan University Kaifeng China

Abstract

AbstractIdiopathic pulmonary fibrosis (IPF) represents a chronic interstitial lung disease with an unclear underlying mechanism and currently lacks a definitive treatment. Cordyceps sinensis (CS), renowned for its pharmacological properties in traditional Chinese medicine and extensive use in lung disease treatment, holds promise as a therapeutic agent for IPF. However, the specific role of CS in treating IPF remains unclear. In this study, we aimed to assess the efficacy of CS in treating IPF and unravel potential underlying mechanisms. Our results demonstrate that CS treatment effectively mitigated pulmonary inflammation and collagen deposition in bleomycin‐induced IPF mice. Proteomics analysis revealed that the regulation of mitochondrial oxidative phosphorylation may serve as a potential protective mechanism of CS against IPF in mice. Further investigation unveiled that CS could suppress the excessive production of mitochondrial reactive oxygen species in lung tissues induced by bleomycin through moderating the expression and activity of mitochondrial complexes, thus safeguarding the integrity and function of mitochondria. Overall, our findings not only underscore the effectiveness of CS in preventing bleomycin‐induced IPF but also highlight mitochondrial‐mediated oxidative stress as a promising therapeutic target for treating IPF.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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