Title Hydrogen sulfide alleviates particulate matter-induced emphysema and airway inflammation by suppressing ferroptosis
Authors Wang, Ying
Liao, Sha
Pan, Zihan
Jiang, Simin
Fan, Jing
Yu, Siwang
Xue, Lixiang
Yang, Jianling
Ma, Shaohua
Liu, Tong
Zhang, Jing
Chen, Yahong
Affiliation Peking Univ Third Hosp, Dept Pulm & Crit Care Med, Beijing, Peoples R China
Peking Univ, Sch Pharmaceut Sci, Dept Chem Biol, Beijing, Peoples R China
Peking Univ Third Hosp, Inst Med Innovat & Res, Ctr Basic Med Res, Beijing, Peoples R China
Peking Univ Third Hosp, Dept Thorac Surg, Beijing, Peoples R China
Keywords NRF2
Issue Date Jun-2022
Publisher FREE RADICAL BIOLOGY AND MEDICINE
Abstract Background: Redox imbalance is an vital mechanism for COPD. At present, insufficient researches have been conducted on the protective effect of hydrogen sulfide (H2S) on PM-induced COPD. However, whether H2S exerts the anti-injury role by blocking ferroptosis and restoring redox equilibrium remain to be investigated. Methods: Human lung tissue samples were collected for IHC staining, and the expressions of Nrf2, ferritinophagyand ferroptosis-related proteins were observed. The WT C57BL/6 and Nrf2 knockout mice models were established with PM(200 mu g per mouse). NaHS(Exogenous H2S) was injected intraperitoneally 30 min in advance. Twenty-nine days later, mice lung tissues were evaluated by HE's and PERLS-DAB's staining. Meanwhile, inflammation and oxidative stress indicators and iron levels were assessed by corresponding ELISA kit. Related protein expressions were detected through Western blot. BEAS-2B cells with or without H2S were exposed to PM2.5 for 36 h. Cell viability, mitochondrial morphology, inflammatory cytokines, antioxidant factors, iron levels, autophagic flux and the levels of ROS, LIP ROS, MitoROS, MMP, as well as related protein expressions were detected by specific methods, respectively. In addition, V5-Nrf2, Nrf2 siRNA, Nrf2 inhibitor ML385, PPAR-gamma inhibitor GW9662, autophagy inhibitor CQ, iron chelator DFO and ferroptosis inhibitor Fer-1 were used to verify the target signaling pathways. Results: We found that the expressions of LIP ROS, ROS, COX2, MDA and other oxidative factors increased, while the antioxidant markers GPX4, GSH and GSH-Px significantly decreased, as well as active iron accumulation in COPD patients, PM-exposured WT and Nrf2-KO mice models and PM2.5-mediated cell models. NaHS pretreatment markedly inhibited PM-induced emphysema and airway inflammation by alleviating ferroptotic changes in vivo and vitro. With the use of V5-Nrf2 overexpression plasmid, Nrf2 siRNA and pathway inhibitors, we found NaHS activates the expressions of Nrf2 and PPAR-gamma, and inhibites ferritinophagy makers LC3B, NCOA4 and FTH1 in BEAS-2B cells. Moreover, the anti-ferroptotic effect of NaHS was further verified to be related to the activation of Nrf2 signal in MEF cells. Conclusion: This research suggested that H2S alleviated PM-induced emphysema and airway inflammation via restoring redox balance and inhibiting ferroptosis through regulating Nrf2-PPAR-ferritinophagy signaling pathway.
URI http://hdl.handle.net/20.500.11897/646905
ISSN 0891-5849
DOI 10.1016/j.freeradbiomed.2022.04.014
Indexed SCI(E)
Appears in Collections: 第三医院
药学院

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