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Published on: January 5, 2017
Paeoniflorin ameliorates experimental colitis by inhibiting gram-positive bacteria-dependent MDP-NOD2 pathway
Xia Luo1, Xiaojing Wang1, Shaowei Huang1
1School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou 510006, Guangdong Province, China.
Abstract:
Previous studies reported that antibiotics inhibit the growth of Gram-positive bacteria and alleviate ulcerative colitis (UC). But how Gram-positive bacteria are involved in the occurrence of inflammatory bowel disease (IBD) and which component of it causes inflammation remain unclear. This work aims to demonstrate that Gram-positive bacteria may be an underlying cause of experimental colitis in mice through the muramyl dipeptide (MDP)-nucleotide-binding oligomerization domain-containing protein-2 (NOD2) pathway and paeoniflorin inhibits the pathway above to alleviate experimental colitis. In this study, colitis mice were established by oral administration of 3% dextran sulfate sodium (DSS) and paeoniflorin (25, 50,100 mg/kg per day, ig) was administered to the mice for 10 days. Results shown that the abundance and the infiltration of Gram-positive bacteria in intestinal tissues increased in UC mice. Paeoniflorin treatment significantly alleviated DSS-induced experimental colitis mice, reduced the abundance of Gram-positive bacteria in feces and the infiltration of Gram-positive bacteria in intestinal tissues. Paeoniflorin also inhibited mRNA and protein expression of MDP-NOD2 pathway components and decreased the levels of related inflammatory cytokines. In vitro experiments showed that MDP strongly stimulated RAW264.7 cells to secrete tumor necrosis factor α (TNF-α), and induced translocation of nuclear factor-kappa B (NF-κB p65) from the cytoplasm to nucleus using immunofluorescence co-localization experiments. Overall, the results indicated that Gram-positive bacteria promote the occurrence of colitis via up-regulation of MDP-NOD2 pathway, and paeoniflorin is able to decrease the infiltration of Gram-positive bacteria in intestine and inhibit Gram-positive bacteria-dependent MDP-NOD2 pathway to alleviate mice colitis.
Insights
Gram-positive bacteria contribute to colitis via the muramyl dipeptide (MDP)-nucleotide-binding oligomerization domain-containing protein-2 (NOD2) pathway. Paeoniflorin alleviates experimental colitis by reducing Gram-positive bacteria and inhibiting this inflammatory pathway.
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- Ulcerative colitis (UC) is linked to Gram-positive bacteria, but the exact mechanism is unclear.
- Inflammatory bowel disease (IBD) pathogenesis involves complex interactions between gut microbiota and host immunity.
- The muramyl dipeptide (MDP)-nucleotide-binding oligomerization domain-containing protein-2 (NOD2) pathway is implicated in inflammatory responses.
Purpose of the Study:
- To investigate the role of Gram-positive bacteria in experimental colitis.
- To elucidate the involvement of the MDP-NOD2 pathway in colitis development.
- To evaluate the therapeutic potential of paeoniflorin in alleviating colitis.
Main Methods:
- Experimental colitis was induced in mice using dextran sulfate sodium (DSS).
- Paeoniflorin was administered to assess its effects on colitis.
- Gut microbiota composition, inflammatory markers, and MDP-NOD2 pathway components were analyzed.
- In vitro studies using RAW264.7 cells investigated MDP-induced inflammatory responses.
Main Results:
- DSS-induced colitis showed increased Gram-positive bacteria abundance and intestinal infiltration.
- Paeoniflorin treatment ameliorated colitis symptoms and reduced Gram-positive bacteria.
- Paeoniflorin inhibited MDP-NOD2 pathway activation and decreased inflammatory cytokine levels.
- MDP stimulation induced pro-inflammatory cytokine secretion (TNF-α) and NF-κB p65 translocation in vitro.
Conclusions:
- Gram-positive bacteria promote colitis through the MDP-NOD2 pathway.
- Paeoniflorin effectively alleviates experimental colitis by targeting Gram-positive bacteria and the MDP-NOD2 pathway.
- This study highlights a novel therapeutic strategy for colitis involving modulation of gut microbiota and inflammatory signaling.
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