Hirsutanol A attenuates lipopolysaccharide-mediated matrix metalloproteinase 9 expression and cytokines production and improves endotoxemia-induced acute sickness behavior and acute lung injury
Journal
Marine Drugs
Journal Volume
17
Journal Issue
6
Date Issued
2019
Author(s)
Jan, Jing-Shiun
Yang, Chih-Hao
Wang, Mong-Heng
Lin, Fan-Li
Yen, Jing-Lun
Hsieh, Irene
Khotimchenko, Maksim
Hsiao, George
Abstract
Activated human monocytes/macrophages, which increase the levels of matrix metalloproteinases (MMPs) and pro-inflammatory cytokines, are the essential mechanisms for the progression of sepsis. In the present study, we determined the functions and mechanisms of hirsutanolA (HA), which is isolated from the red alga-derived marine fungus Chondrostereum sp. NTOU4196, on the production of pro-inflammatory mediators produced from lipopolysaccharide (LPS)-treated THP-1 cells. Our results showed that HA suppressed LPS-triggered MMP-9-mediated gelatinolysis and expression of protein and mRNA in a concentration-dependent manner without effects on TIMP-1 activity. Also, HA significantly attenuated the levels of TNF-α, IL-6, and IL-1β from LPS-treated THP-1 cells. Moreover, HA significantly inhibited LPS-mediated STAT3 (Tyr705) phosphorylation, IκBα degradation and ERK1/2 activation in THP-1 cells. In an LPS-induced endotoxemia mouse model, studies indicated that HA pretreatment improved endotoxemia-induced acute sickness behavior, including acute motor deficits and anxiety-like behavior. HA also attenuated LPS-induced phospho-STAT3 and pro-MMP-9 activity in the hippocampus. Notably, HA reduced pathologic lung injury features, including interstitial tissue edema, infiltration of inflammatory cells and alveolar collapse. Likewise, HA suppressed the induction of phospho-STAT3 and pro-MMP-9 in lung tissues. In conclusion, our results provide pharmacological evidence that HA could be a useful agent for treating inflammatory diseases, including sepsis. ? 2019 by the authors.
Subjects
Acute lung injury (ALI); Acute sickness behavior; Interleukin (IL); Lipopolysaccharide (LPS); Matrix metalloproteinases-9 (MMP-9); Signal transducer and activator of transcription 3 (STAT3)
SDGs
Other Subjects
antiinflammatory agent; gelatinase B; hirsutanol A; I kappa B kinase alpha; interleukin 1beta; interleukin 6; lipopolysaccharide; messenger RNA; mitogen activated protein kinase 1; mitogen activated protein kinase 3; STAT3 protein; tissue inhibitor of metalloproteinase 1; tumor necrosis factor; unclassified drug; cytokine; gelatinase B; hirsutanol A; lipopolysaccharide; sesquiterpene; acute lung injury; animal experiment; animal model; animal tissue; antiinflammatory activity; anxiety disorder; Article; attenuation; body weight loss; cell viability; controlled study; cytokine production; drug determination; drug effect; endotoxemia; enzyme activation; gene expression; hippocampus; human; human cell; inflammatory cell; lung edema; lung infiltrate; male; motor dysfunction; mouse; nonhuman; protein degradation; protein expression; protein phosphorylation; THP-1 cell line; acute lung injury; animal; C57BL mouse; complication; drug effect; endotoxemia; illness behavior; lung; metabolism; signal transduction; tumor cell line; Acute Lung Injury; Animals; Cell Line, Tumor; Cytokines; Endotoxemia; Humans; Illness Behavior; Lipopolysaccharides; Lung; Male; Matrix Metalloproteinase 9; Mice; Mice, Inbred C57BL; Sesquiterpenes; Signal Transduction; THP-1 Cells
Type
journal article