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Sulconazole induces pyroptosis promoted by interferon-γ in monocyte/macrophage lineage cells
Shiori Miyawaki1, Atsushi Sawamoto1, Satoshi Okuyama1
1Department of Pharmaceutical Pharmacology, College of Pharmaceutical Sciences, Matsuyama University, 4-2, Bunkyo-cho, Matsuyama, Ehime, 790-0826, Japan.
Abstract:
Imidazole derivatives are commonly used as antifungal agents. Here, we aimed to investigate the functions of imidazole derivatives on macrophage lineage cells. We assessed the expression levels of inflammatory cytokines in mouse monocyte/macrophage lineage (RAW264.7) cells. All six imidazole derivatives examined, namely ketoconazole, sulconazole, isoconazole, luliconazole, clotrimazole, and bifonazole, reduced the expression levels of inflammatory cytokines, such as interleukin (IL)-6 and tumor necrosis factor-α, after induction by lipopolysaccharide (LPS) in RAW264.7 cells. These imidazole derivatives also induced cell death in RAW264.7 cells, regardless of the presence or absence of LPS. Since the cell death was characteristic in morphology, we investigated the mode of the cell death. An imidazole derivative, sulconazole, induced gasdermin D degradation together with caspase-11 activation, namely, pyroptosis in RAW264.7 cells and peritoneal macrophages. Furthermore, priming with interferon-γ promoted sulconazole-induced pyroptosis in RAW264.7 cells and macrophages and reduced the secretion of the inflammatory cytokine, IL-1β, from sulconazole-treated macrophages. Our results suggest that imidazole derivatives suppress inflammation by inducing macrophage pyroptosis, highlighting their modulatory potential for inflammatory diseases.
Insights
Imidazole derivatives reduce inflammatory cytokines and induce pyroptosis, a form of cell death, in macrophages. This suggests their potential for treating inflammatory diseases.
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Imidazole derivatives are established antifungal agents.
- Their effects on macrophage lineage cells remain largely unexplored.
- Macrophages play a critical role in inflammatory responses.
Purpose of the Study:
- To investigate the impact of imidazole derivatives on macrophage inflammatory responses.
- To elucidate the mechanism of cell death induced by these compounds.
Main Methods:
- Assessed inflammatory cytokine expression (IL-6, TNF-α) in RAW264.7 cells stimulated with lipopolysaccharide (LPS).
- Examined cell death morphology and mechanisms, including pyroptosis.
- Investigated the role of interferon-γ priming in sulconazole-induced pyroptosis.
Main Results:
- Six imidazole derivatives (ketoconazole, sulconazole, isoconazole, luliconazole, clotrimazole, bifonazole) reduced LPS-induced IL-6 and TNF-α expression.
- These derivatives induced cell death in RAW264.7 cells, independent of LPS.
- Sulconazole induced pyroptosis via gasdermin D degradation and caspase-11 activation in macrophages.
- Interferon-γ priming enhanced sulconazole-induced pyroptosis and reduced IL-1β secretion.
Conclusions:
- Imidazole derivatives suppress macrophage inflammation by inducing pyroptosis.
- These findings highlight the potential of imidazole derivatives as modulators for inflammatory diseases.

