Caffeic acid, but not ferulic acid, inhibits macrophage pyroptosis by directly blocking gasdermin D activation
Mingjiang Liu,
Dandan Liu,
Chenglong Yu,
Hua hao Fan,
Xin Zhao,
Huiwen Wang,
Chi Zhang,
Minxia Zhang,
Ruonan Bo,
Shasha He,
Xuerui Wang,
Hui Jiang,
Yuhong Guo,
Jingui Li,
Xiaolong Xu,
Qingquan Liu
Affiliations
Mingjiang Liu
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Dandan Liu
College of Veterinary Medicine Yangzhou University Yangzhou China
Chenglong Yu
College of Veterinary Medicine Yangzhou University Yangzhou China
Hua hao Fan
Beijing University of Chemical Technology Beijing China
Xin Zhao
College of Veterinary Medicine Yangzhou University Yangzhou China
Huiwen Wang
College of Veterinary Medicine Yangzhou University Yangzhou China
Chi Zhang
College of Veterinary Medicine Yangzhou University Yangzhou China
Minxia Zhang
College of Veterinary Medicine Yangzhou University Yangzhou China
Ruonan Bo
College of Veterinary Medicine Yangzhou University Yangzhou China
Shasha He
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Xuerui Wang
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Hui Jiang
Beijing Chest Hospital Capital Medical University Beijing China
Yuhong Guo
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Jingui Li
College of Veterinary Medicine Yangzhou University Yangzhou China
Xiaolong Xu
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Qingquan Liu
Beijing Key Laboratory of Basic Research With Traditional Chinese Medicine on Infectious Diseases Beijing Hospital of Traditional Chinese Medicine Capital Medical University Beijing China
Abstract Regulated pyroptosis is critical for pathogen elimination by inducing infected cell rupture and pro‐inflammatory cytokines secretion, while overwhelmed pyroptosis contributes to organ dysfunction and pathological inflammatory response. Caffeic acid (CA) and ferulic acid (FA) are both well‐known antioxidant and anti‐inflammatory phenolic acids, which resemble in chemical structure. Here we found that CA, but not FA, protects macrophages from both Nigericin‐induced canonical and cytosolic lipopolysaccharide (LPS)‐induced non‐canonical pyroptosis and alleviates LPS‐induced mice sepsis. It significantly improved the survival of pyroptotic cells and LPS‐challenged mice and blocked proinflammatory cytokine secretion. The anti‐pyroptotic effect of CA is independent of its regulations in cellular lipid peroxidation, mitochondrial function, or pyroptosis‐associated gene transcription. Instead, CA arrests pyroptosis by directly associating with gasdermin D (GSDMD) and blocking its processing, resulting in reduced N‐GSDMD pore construction and less cellular content release. In LPS‐induced septic mice, CA inhibits GSDMD activation in peritoneal macrophages and reduces the serum levels of interleukin‐1β and tumor necrosis factor‐α as the known pyroptosis inhibitors, disulfiram and dimethyl fumarate. Collectively, these findings suggest that CA inhibits pyroptosis by targeting GSDMD and is a potential candidate for curbing the pyroptosis‐associated disease.