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Preinduced intestinal HSP70 improves visceral hypersensitivity and abnormal intestinal motility in PI-IBS mouse model 被引量:8
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作者 Cheng Lan Xiao-Ning Sun +5 位作者 Xu-Chun Zhou Bo Yang Bai-Li Huang tao-zhi deng Zhou-Tao He Xiang-Yang Han 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2016年第3期297-300,共4页
Objective:To investigate the impact of the preinduced intestinal heat shock protein 70(HSP70)on the visceral hypersensitivity and abnormal intestinal motility in a post-infectious irritable bowel syndrome(PI-IBS) mous... Objective:To investigate the impact of the preinduced intestinal heat shock protein 70(HSP70)on the visceral hypersensitivity and abnormal intestinal motility in a post-infectious irritable bowel syndrome(PI-IBS) mouse model.Methods:Eighty-four female C57BL/6 mice were randomly assigned to four groups:control group(n=21) and induction+PI-IBS group(n=21),PI-IBS group(n=21) and induction group(n=21).The mice in PI-IBS group were infected in vivo with trichinella spiralis by oral administration.The visceral hypersensitivity and intestinal motility were evaluated respectively with abdominal withdrawal reflex and colon transportation test.The intestinal HSP70 protein and mRNA level was measured by Western blot and realtime PCR.Meanwhile,the intestinal proinflammatory cytokines IL-10 and TNF-α level was detected by ELISA.Results:Compared with their counterparts in PI-IBS group,the animals in the Induction+PI-IBS group show significantly increased intestinal level of HSP70 and obviously ameliorative clinical tigurcs.including abdominal withdrawal reflex score,intestine transportation time and Bristol scores(P<0.05).Meanwhile,the intestinal post-inflammatory cytokines remarkably changed,including increased IL-10 level and decreased TNF-αlevel(P<0.05).Conclusions:Intestinal IISP70 may play a potential protective role through improving the imbalance between the intestinal post-inflammatory and anti-inflammatory cytokines in PI-IBS. 展开更多
关键词 Post-infectious IRRITABLE bowel syndrome Heat shock protein 70 PROINFLAMMATORY cytokine VISCERAL HYPERSENSITIVITY INTESTINAL MOTILITY
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Suppressive effect of pectic polysaccharides extracted from Rauwolfia verticillata(Lour.) Baill.var.hainanensis Tsiang on inflammation by regulation of NF-κB pathway and interleukin-17 in mice with dextran sulphatesodium-induced ulcerative colitis 被引量:5
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作者 Xin-Pu Miao Xiao-Ning Sun +4 位作者 Lu-Jia Cui Qin-Fang Cao Gui-Feng Zhuang tao-zhi deng Dong-Yan Zhang 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2015年第2期147-152,共6页
Objective:To investigate the effects of pectic polysaccharides extracted from Rauwolfia verticillata(Lour.) Baill.var.hainanensis Tsiang on an experimental murine colitis model.Methods:Experimental colitis was induced... Objective:To investigate the effects of pectic polysaccharides extracted from Rauwolfia verticillata(Lour.) Baill.var.hainanensis Tsiang on an experimental murine colitis model.Methods:Experimental colitis was induced by dextran sulfate sodium(DSS),and mice were divided into 4 groups:control.DSS alone.DSS plus SASP,DSS plus pectic polysaccharides.The disease activity index(DAI) and histological score were observed.The tumor necrosis factor(TNF)-α and interleukin(IL)-17 levels were measured by enzyme-linked immunosorbent assay.I κ B and NF-κB p65 expression were assessed by western blot analysis.Myeloperoxidase(MPO) activity was determined by using MPO assay kit.Re.sults:Administration of pectic polysaccharides significantly reduced the severity of DSS-induced colitis as assessed by DAT and histological score,and resulted in down regulation of MPO activity and NF-κB p65 expression and subsequent degradation of IκB protein,strikingly reduced the production of TNF-α and IL-17.Conclusions:Pectic polysaccharides extracted from Rauvolfia verticillata(Lour.)Baill.var.hainanensis Tsiang exerts beneficial effects in experimental colitis and may therefore provide a useful therapeutic approach for the treatment of UC. 展开更多
关键词 Pectic polysaccharides ULCERATIVE COLITIS Nuclear factor DEXTRAN sulfate sodium-induced COLITIS INTERLEUKIN-17
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