二十烷酸
脂质信号
炎症
大麻酚
花生四烯酸5-脂氧合酶
酵母多糖
化学
免疫系统
细胞生物学
生物
生物化学
免疫学
花生四烯酸
医学
体外
酶
大麻
精神科
作者
Lukas K. Peltner,Lars Gluthmann,Friedemann Börner,Simona Pace,Robert K. Hoffstetter,Christian Kretzer,Rosella Bilancia,Federica Pollastro,Andreas Koeberle,Giovanni Appendino,Antonietta Rossi,Marcia E. Newcomer,Nathaniel C. Gilbert,Oliver Werz,Paul M. Jordan
标识
DOI:10.1016/j.chembiol.2023.08.001
摘要
Cannabinoids are phytochemicals from cannabis with anti-inflammatory actions in immune cells. Lipid mediators (LM), produced from polyunsaturated fatty acids (PUFA), are potent regulators of the immune response and impact all stages of inflammation. How cannabinoids influence LM biosynthetic networks is unknown. Here, we reveal cannabidiol (CBD) as a potent LM class-switching agent that stimulates the production of specialized pro-resolving mediators (SPMs) but suppresses pro-inflammatory eicosanoid biosynthesis. Detailed metabololipidomics analysis in human monocyte-derived macrophages showed that CBD (i) upregulates exotoxin-stimulated generation of SPMs, (ii) suppresses 5-lipoxygenase (LOX)-mediated leukotriene production, and (iii) strongly induces SPM and 12/15-LOX product formation in resting cells by stimulation of phospholipase A2-dependent PUFA release and through Ca2+-independent, allosteric 15-LOX-1 activation. Finally, in zymosan-induced murine peritonitis, CBD increased SPM and 12/15-LOX products and suppressed pro-inflammatory eicosanoid levels in vivo. Switching eicosanoid to SPM production is a plausible mode of action of CBD and a promising inflammation-resolving strategy.
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