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1,8-cineole ameliorates colon injury by downregulating macrophage M1 polarization via inhibiting the HSP90-NLRP3-SGT1 complex
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作者 shengsuo ma Bing Yang +7 位作者 Yang Du Yiwen Lv Jiarong Liu Yucong Shi Ting Huang Huachong Xu Li Deng Xiaoyin Chen 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2023年第9期984-998,共15页
Ulcerative colitis(UC)is characterized by chronic relapsing intestinal inflammation.Currently,there is no effective treatment for the disease.According to our preliminary data,1,8-cineole,which is the main active comp... Ulcerative colitis(UC)is characterized by chronic relapsing intestinal inflammation.Currently,there is no effective treatment for the disease.According to our preliminary data,1,8-cineole,which is the main active compound of Amomum compactum Sol.ex Maton volatile oil and an effective drug for the treatment of pneumonia,showed remarkable anti-inflammatory effects on colitis pathogenesis.However,its mechanism of action and direct targets remain unclear.This study investigated the direct targets and mechanism through which 1,8-cineole exerts its anti-inflammatory effects using a dextran sulfate sodium salt-induced colitis mouse model.The effects of 1,8-cineole on macrophage polarization were investigated using activated bone marrow-derived macrophages and RAW264.7 cells.In addition,1,8-cineole targets were revealed by drug affinity responsive target stability,thermal shift assay,cellular thermal shift assay,and heat shock protein 90(HSP90)adenosine triphosphatases(ATPase)activity assays.The results showed that 1,8-cineole exhibited powerful anti-inflammatory properties in vitro and in vivo by inhibiting the macrophage M1 polarization and protecting intestinal barrier function.Mechanistically,1,8-cineole directly interacted with HSP90 and decreased its ATPase activity,also inhibited nucleotide-binding and oligomerization domain-,leucine rich repeat-,and pyrin domain-containing 3(NLRP3)binding to HSP90 and suppressor of G-two allele of SKP1(SGT1)and suppressed NLRP3 inflammasome activation in macrophages.These results demonstrated that 1,8-cineole is a potential drug candidate for UC treatment. 展开更多
关键词 1 8-cineole Amomum compactum Sol.ex Maton NLRP3 HSP90 Ulcerative colitis Intestinal barrier function
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Mechanisms involved in antineuralgic effects of Paeonia Lactiflora: prediction based on network pharmacology 被引量:8
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作者 Di Zhang shengsuo ma +5 位作者 Jianxin Sun Bing Yang Haoming Lin Meijing Xie Meina Huang Guoping Zhao 《TMR Clinical Research》 2019年第2期43-56,共14页
目的:白芍的镇痛作用已被广泛应用于中医临床,但对其潜在机制知之甚少.本研究旨在从网络药理学的角度阐明其有效成分和镇痛机制.方法:通过中药系统药理学分析平台(TCMSP)筛选出其可能的活性成分及CAS.从Pubchem 中获得其SMILES,并通过在... 目的:白芍的镇痛作用已被广泛应用于中医临床,但对其潜在机制知之甚少.本研究旨在从网络药理学的角度阐明其有效成分和镇痛机制.方法:通过中药系统药理学分析平台(TCMSP)筛选出其可能的活性成分及CAS.从Pubchem 中获得其SMILES,并通过在Swiss Target Prediction 数据库中反向对接获得潜在的靶点.从GeenCards 数据库中提取疼痛相关分子,采用韦恩图筛选出芍药治疗疼痛的预测靶点.机制分析采用String 构建蛋白-蛋白相互作用,运用DAVID 平台进行靶点GO 功能富集和KEGG 信号通路富集.结果:通过GO 和KEGG 分析我们发现疼痛相关的信号通路主要涉及血清素能突触、钙信号通路、调控TRP 通道的炎症介质.利用基于网络的系统生物学和分子对接分析,我们预测了白芍中的11 种活性成分和97 个潜在的治疗靶标.PRKCA、CASP3、ALOX15、SLC6A4、PRKCG、ALOX5、PRKCB、ALOX12、 EGFR、ADRB2、RYR3、RYR1、NOS2、PTAFR、PRKCQ、PRKCD 等基因参与了白芍的镇痛作用.结论:白芍可通过调节TRP 通道炎症介质、钙信号通路和5-羟色胺受体减轻疼痛.PRKCA、PRKCB、PRKCD、 PRKCQ 和PRKCG 可能是疼痛治疗的新靶标. 展开更多
关键词 白芍 网络药理学 调节TRP通道炎症介质
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