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Protective Effect and Mechanism of n-butanol Extract from Diploclisia glaucescens(B1.)Diels on Rats with Adjuvant Arthritis
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作者 Chuhui ZHOU Zhouyan HUANG +4 位作者 Fengxian ZHAO Yong CHEN Xianxian LIU Xiaolian LIANG Wenli LI 《Medicinal Plant》 CAS 2023年第5期45-48,共4页
[Objectives]To study the protective effect and mechanism of n-butanol extract of Diploclisia glaucescens(B1.)Diels on rats with adjuvant arthritis.[Methods]A rat adjuvant arthritis(AA)model with similarities to a clin... [Objectives]To study the protective effect and mechanism of n-butanol extract of Diploclisia glaucescens(B1.)Diels on rats with adjuvant arthritis.[Methods]A rat adjuvant arthritis(AA)model with similarities to a clinical RA(rheumatoid arthritis)patient was used,and the model was made by injection of Complete Freund s adjuvant(CFA).Body mass and joint swelling degree were used as indicators,and the organ index was calculated and the synovial tissue of rats was examined under microscope to evaluate the protective effect of n-butanol extract on arthritis.The effects of n-butanol extract on TNF-α,IL-1βand PGE_(2)contents in rat serum were detected by ELISA kit.[Results]Arthritic rats experienced significant weight loss;the n-butanol extract reduced the joint swelling in rats.It exerted an effect on rat organs and reduced the contents of TNF-α,IL-1βand PGE_(2) in rat serum,and also reduced synovial inflammation in rats.[Conclusions]The n-butanol extract of D.glaucescens can protect rats with adjuvant arthritis by reducing the content of inflammatory factors. 展开更多
关键词 Diploclisia glaucescens(B1.)Diels n-butanol extract rats with adjuvant arthritis
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Improving Effects of Astragalus Polysaccharides on Cardiac Function via Keap1/Nrf2-ARE Signal Pathway in Adjuvant Arthritis Rats 被引量:13
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作者 Yue Sun Jian Liu +3 位作者 Lei Wan Fang Wang Xiao-jun Zhang Ya-jun Qi 《Chinese Herbal Medicines》 CAS 2016年第2期143-153,共11页
Objective To observe the effect of Astragalus polysaccharides(APS) on cardiac function and expression of Keap1/Nrf2-ARE signal pathway in adjuvant arthritis(AA) rats. Methods Forty-eight rats were randomly divided... Objective To observe the effect of Astragalus polysaccharides(APS) on cardiac function and expression of Keap1/Nrf2-ARE signal pathway in adjuvant arthritis(AA) rats. Methods Forty-eight rats were randomly divided into normal control(NC) group, model control(MC) group, leflunomide(LEF) group, and APS group. The AA model rats were induced with Freund's complete adjuvant, then administration began from day 19 after modeling for 30 d. The paw swelling and arthritic index(AI), the cardiac function indexes, the expression of Keap1, maf, Nrf2 m RNAs, and HO-1, r-GCS proteins in cardiac tissues were observed. Oxidation-related substances(SOD, MDA, ROS, and TAC) and cytokines(IL-10 and TNF-ɑ) were also determined. Results Compared with NC group, the paw swelling and AI were increased, and the body weight was decreased in MC group. HR, HI, LVSP, LVEDP, and levels of MDA, TAC, ROS, RNS, and TNF-ɑ in MC group were increased, while dp/dtmax and levels of GSH, TRX, and IL-10 were decreased. Compared with MC group, LEF group showed higher HR and ± dp/dtmax, and lower LVEDP. In APS group, the HR, LVSP, and LVEDP were decreased and ±dp/dtmax was increased. TNF-ɑ was decreased, TAC, ROS, MDA, and IL-10 were increased in both LEF and APS groups. APS and LEF groups also showed less MDA, TAC, ROS, and SOD, and the differences were statistically significant. Spearman correlation analysis showed that the cardiac function parameters were positively correlated with Keap1, anti-oxidant indicators, and anti-inflammation cytokines, and negatively correlated with Nrf2, oxidation indictors, pro-inflammation cytokines, and inflammation indictors.Conclusion APS can adjust the expression of Keap1/Nrf2-ARE signal pathway in AA rats, and can also improve their cardiac function. The mechanism may be involved in increasing myocardial anti-oxidant capacity, reducing oxidative stress, and inhibiting inflammation. 展开更多
关键词 Astragalus polysaccharide adjuvant arthritis rats cardiac function oxidative stress
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