1. Academic Validation
  2. Endothelial endogenous CSE/H2S inhibits endothelial pyroptosis by activating sirtuin1 to attenuate LPS-induced acute lung injury

Endothelial endogenous CSE/H2S inhibits endothelial pyroptosis by activating sirtuin1 to attenuate LPS-induced acute lung injury

  • FASEB J. 2025 Mar 15;39(5):e70420. doi: 10.1096/fj.202402042R.
Min Zhu 1 2 Xiaofang Fan 1 Nan Zhang 1 Hui Wang 1 Jianshe Ma 1 Xianghong Yin 1 Junyan Cai 3 Linjing Cong 1 Ran Chen 1 Junming Fan 1 Xiaoxia Kong 1 Bin Geng 4 Yongsheng Gong 1 Congkuo Du 1
Affiliations

Affiliations

  • 1 Institute of Hypoxia Medicine, School of Basic Medical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, China.
  • 2 Department of Anesthesiology, West China Hospital of Sichuan University, Chengdu, Sichuan, China.
  • 3 Department of Cardiology, Zhongda Hospital Affiliated to Southeast University, Nanjing, Jiangsu, P.R. China.
  • 4 Hypertension Center, State Key Laboratory of Cardiovascular Disease, National Center for Cardiovascular Diseases, Fuwai Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Abstract

Endothelial Pyroptosis, a pro-inflammatory programmed cell death, promotes endothelial inflammation and is a pivotal process in the initial stage of acute lung injury (ALI). Hydrogen sulfide (H2S), a gasotransmitter primarily dependent on cystathionine γ-lyase (CSE) in the cardiovascular and respiratory systems, plays a protective role during ALI. Nonetheless, the modulatory role and precise molecular mechanism of endothelial endogenous CSE/H2S in the pathogenesis of ALI remain elusive. Herein, we prepared an ALI mouse model using intratracheal administration of LPS (5 mg/kg), and lung injury was assessed by evaluating pulmonary edema, inflammatory response, and endothelial Pyroptosis. In this model, H2S production from pulmonary tissues declined in a time-dependent manner, accompanied by a compensatory elevation of CSE protein levels. Treatment with the H2S donor (NaHS) attenuated pulmonary edema, inflammatory cell infiltration, endothelial Pyroptosis, and reduced serum levels of tumor necrosis factor-alpha (TNF-α), interleukin-1β (IL-1β), and interleukin-6 (IL-6). Meanwhile, the inducible deletion of CSE in endothelial cells exacerbated these changes. The blocking effect of CSE/H2S on endothelial Pyroptosis (evidenced by caspase-11 activation and GSDMD-NT formation) was also confirmed in cultured pulmonary microvascular endothelial cells (PMECs). Mechanistically, H2S-mediated regulation of sirtuin-1 (SIRT1) expression and activation (via sulfhydration) contributed to the modulatory process. Collectively, we uncovered that endothelial endogenous CSE/H2S alleviates endothelial Pyroptosis by activating SIRT1, thereby preventing LPS-induced acute lung injury.

Keywords

SIRT1; acute lung injury; cystathionine gamma‐lyase (CSE); hydrogen sulfide (H2S); pyroptosis; sulfhydration.

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