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首页> 外文期刊>BioFactors >p-Coumaric acid, a dietary polyphenol ameliorates inflammation and curtails cartilage and bone erosion in the rheumatoid arthritis rat model
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p-Coumaric acid, a dietary polyphenol ameliorates inflammation and curtails cartilage and bone erosion in the rheumatoid arthritis rat model

机译:膳食多酚改善炎症并在类风湿性关节炎大鼠模型中改善炎症和缩减软骨和骨腐蚀

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This study was designed to explore the underlying mechanism of p-coumaric acid (CA), a dietary polyphenol in adjuvant-induced arthritis (AIA) rat model with reference to synovitis and osteoclastogenesis. Celecoxib (COX-2 selective inhibitor) (5 mg/kg b.wt) was used as a reference drug. CA remarkably suppressed the paw edema, body weight loss and inflammatory cytokine and chemokine levels (TNF-, IL-1, IL-6, and MCP-1) in serum and ankle joint of arthritic rats. Consistently, CA reduced the expression of osteoclastogenic factors (RANKL and TRAP), pro-inflammatory cytokines (TNF-, IL-1, IL-6, and IL-17), and inflammatory enzymes (iNOS and COX-2) in arthritic rats. However, OPG expression was found elevated. Besides, the abundance of transcription factors (NF-B-p65, and p-NF-B-p65, NFATc-1, and c-Fos) and MAP kinases (JNK, p-JNK, and ERK1/2) expression was alleviated in CA administered arthritic rats. In addition, CA truncated osteoclastogenesis by regulating the RANKL/OPG imbalance in arthritic rats and suppressing the RANKL-induced NFATc-1 and c-Fos expression in vitro. Radiological (CT and DEXA scan) and histological assessments authenticated that CA inhibited TRAP, bone destruction and cartilage degradation in association with enhanced bone mineral density. Taken together, our findings suggest that CA demonstrated promising anti-arthritic effect and could prove useful as an alternative drug in RA therapeutics. (c) 2017 BioFactors, 43(5):698-717, 2017
机译:该研究旨在探讨p-香豆酸(CA),佐剂诱导的关节炎(AIA)大鼠模型中的膳食多酚的潜在机制,参考滑膜炎和骨核苷酸发生。 Celecoxib(COX-2选择性抑制剂)(5mg / kg B.wt)用作参考药物。 Ca在血清和关节炎大鼠的血清和踝关节中显着抑制了爪子水肿,体重减轻和炎症细胞因子和趋化因子水平(TNF-,IL-1,IL-6和MCP-1)。始终如一地,Ca降低了骨细胞源性因子(RANKL和捕集器),促炎细胞因子(TNF-,IL-1,IL-6和IL-17)的表达,以及在关节炎大鼠中的炎症酶(INOS和COX-2) 。但是,发现OPG表达升高。此外,减排了转录因子(NF-B-P65和P-NF-B-P65,NFATC-1和C-FOS)和MAP激酶(JNK,P-JNK和ERK1 / 2)表达的丰度在Ca给予的关节炎大鼠。另外,通过调节关节炎大鼠中的RANKL / OPG失衡并抑制RANKL诱导的NFATC-1和C-FOS表达,通过体外突变截断的骨酸发生。放射学(CT和DEXA扫描)和组织学评估验证CA抑制捕集器,骨破坏和软骨降解与增强的骨密度相关。我们的研究结果表明CA展示了有前途的抗关节炎效应,并且可以证明是RA治疗剂中的替代药物。 (c)2017年生物actors,43(5):698-717,2017

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