Triptolide decreases rheumatoid arthritis fibroblast-like synoviocyte proliferation, invasion, inflammation and presents a therapeutic effect in collagen-induced arthritis rats via inactivating lncRNA RP11-83J16.1 mediated URI1 and β-catenin signaling

•TP inhibits RA-FLS viability and lncRNA RP11-83J16.1 in a dose-dependent manner.•TP inhibits RA-FLS proliferation, invasion, inflammatory level, URI1 signaling.•LncRNA RP11-83J16.1 weakens the effects of triptolide on RA-FLS cell behaviors.•TP decreases CIA model arthritis score, synovial tissue in...

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Veröffentlicht in:International immunopharmacology 2021-10, Vol.99, p.108010-108010, Article 108010
Hauptverfasser: Piao, Xuemei, Zhou, Jieru, Xue, Luan
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Sprache:eng
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Zusammenfassung:•TP inhibits RA-FLS viability and lncRNA RP11-83J16.1 in a dose-dependent manner.•TP inhibits RA-FLS proliferation, invasion, inflammatory level, URI1 signaling.•LncRNA RP11-83J16.1 weakens the effects of triptolide on RA-FLS cell behaviors.•TP decreases CIA model arthritis score, synovial tissue inflammation infiltration. Our previous study observed that long non-coding RNA (lncRNA) RP11-83J16.1 promoted rheumatoid arthritis (RA)-fibroblast-like synoviocyte (RA-FLS) proliferation, invasion and inflammation, which was downregulated by triptolide treatment. Therefore, the present study aimed to further investigate the mechanism and interaction between triptolide and lncRNA RP11-83J16.1 in RA treatment in vitro and in vivo. RA-FLS was isolated and treated by different concentration of triptolide and lncRNA RP11-83J16.1 overexpression plasmid. Furthermore, collagen-induced arthritis (CIA) rat model was constructed followed by triptolide and lncRNA RP11-83J16.1 overexpression plasmid treatment. Triptolide inhibited RA-FLS viability and lncRNA RP11-83J16.1 expression in a dose-dependent manner. Afterward, triptolide treatment inhibited RA-FLS proliferation, invasion, levels of inflammatory markers (TNF-α, IL-1β, IL-6, MMP-3, and MMP-9), inactivated lncRNA RP11-83J16.1, URI1 and β-catenin signaling, but promoted apoptosis. However, lncRNA RP11-83J16.1 overexpression weakened the effects of triptolide on regulating RA-FLS cell behaviors, URI1 signaling and β-catenin signaling. In CIA model, triptolide decreased arthritis score, hyperproliferation of synovial cells, inflammation infiltration of synovial tissue, inflammatory markers (TNF-α, IL-1β, IL-6, MMP-3, and MMP-9), inactivated lncRNA RP11-83J16.1, URI1 and β-catenin signaling, but increased cell apoptosis rate of synovial tissue. Nevertheless, lncRNA RP11-83J16.1 curtailed the treatment effect of triptolide in CIA model. Triptolide decreases RA-FLS proliferation, invasion, inflammation and presents a therapeutic effect in CIA model via inactivating lncRNA RP11-83J16.1 mediated URI1 and β-catenin signaling.
ISSN:1567-5769
1878-1705
DOI:10.1016/j.intimp.2021.108010