Anti-inflammatory effects of dimemorfan on inflammatory cells and LPS-induced endotoxin shock in mice

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Abstract

Background and purpose: Dimemorfan (a σ1 receptor agonist) showed neuroprotective properties in animal models of inflammation-mediated neurodegenerative conditions, but its effects on inflammatory cells and systemic inflammation remain unclear. Experimental approach: The effects of dimemorfan on phorbol-12-myristate-13-acetate (PMA)- and N-formyl-methionyl-leucyl- phenylalanine (fMLP)- induced neutrophils and lipopolysaccharide (LPS)-activated microglial cells, as well as LPS-induced endotoxin shock in mice were elucidated. Key results: Dimemorfan decreased PMA- and fMLP-induced production of reactive oxygen species (ROS) and CD11b expression in neutrophils, through mechanisms independent of σ1 receptors, possibly by blocking ROS production and G-protein-mediated intracellular calcium increase. Dimemorfan also inhibited LPS-induced ROS and nitric oxide (NO) production, as well as that of monocyte chemoattractant protein-1 and tumour necrosis factor-alpha (TNF-α), by inhibition of NADPH oxidase (NOX) activity and suppression of iNOS up-regulation through interfering with nuclear factor kappa-B (NF-κB) signalling in microglial cells. Treatment in vivo with dimemorfan (1 and 5 mg kg-1, i.p., at three successive times after LPS) decreased plasma TNF-α, and neutrophil infiltration and oxidative stress in the lung and liver. Conclusions and implications: Our results suggest that dimemorfan acts via σ1 receptor-independent mechanisms to modulate intracellular calcium increase, NOX activity, and NF-κB signalling, resulting in inhibition of iNOS expression and NO production, and production of pro-inflammatory cytokines. These effects may contribute its anti-inflammatory action and protective effects against endotoxin shock in mice. © 2008 Nature Publishing Group All rights reserved.

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Wang, Y. H., Shen, Y. C., Liao, J. F., Li, C. H., Chou, C. Y., Liou, K. T., & Chou, Y. C. (2008). Anti-inflammatory effects of dimemorfan on inflammatory cells and LPS-induced endotoxin shock in mice. British Journal of Pharmacology, 154(6), 1327–1338. https://doi.org/10.1038/bjp.2008.202

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