首站-论文投稿智能助手
典型文献
GW842166X Alleviates Osteoarthritis by Repressing LPS-mediated Chondrocyte Catabolism in Mice
文献摘要:
Objective:To explore the role and underlying mechanism of GW842166X on osteoarthritis and osteoarthritis-associated abnormal catabolism.Methods:The extracted mouse chondrocytes were treated with GW842166X followed by lipopolysaccharide(LPS).The chondrocytes were divided into the control group,LPS group,LPS+50 nmol/L GW842166X group,and LPS+100 nmol/L GW842166X group.The cytotoxicity of GW842166X was tested using the CCK-8 assay.Western blot,RT-qPCR,and ELISA were applied to evaluate the expression of the inflammatory biomarkers in mouse chondrocytes.The expression of extracellular matrix molecules was detected by the Western blot,RT-qPCR,and immunofluorescence.Additionally,the activity of NF-κB was checked by the Western blot and immunofluorescence.The mouse Hulth models were generated to examine the in vivo effects of GW842166X on osteoarthritis.Hematoxylin and eosin staining,safranin O/fast green staining,and immunohistochemistry were applied to detect the histological changes.Results:GW842166X below 200 μmol/L had no cytotoxicity on the mouse chondrocytes.LPS-induced high expression of TGF-p1,IL-10,TNF-a,and IL-6 was significantly reduced by GW842166X.In addition,GW842166X upregulated the expression of aggrecan and collagen type Ⅲ,which was downregulated after the LPS stimulation.The upregulated expression of ADAMTS-5 and MMP-13 by LPS stimulation was dropped in response to the GW842166X treatment.Furthermore,LPS decreased the IκBa expression in the cytoplasm and increased the nuclear p65 expression.However,these changes were reversed by the GW842166X pretreatment.Moreover,the damages in the knees caused by the Hulth surgery in mice were restored by GW842166X.Conclusion:GW842166X impeded the LPS-mediated catabolism in mouse chondrocytes,thereby inhibiting the progression of osteoarthritis.
文献关键词:
作者姓名:
Wan-ran HUANG;Jun-xue TU;Ai-qing QIAO;Li-jia CHEN
作者机构:
Department of Pharmacy,The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University,Wenzhou 325000,China
引用格式:
[1]Wan-ran HUANG;Jun-xue TU;Ai-qing QIAO;Li-jia CHEN-.GW842166X Alleviates Osteoarthritis by Repressing LPS-mediated Chondrocyte Catabolism in Mice)[J].当代医学科学(英文),2022(05):1046-1054
A类:
GW842166X,Repressing,Chondrocyte,Catabolism,safranin
B类:
Alleviates,Osteoarthritis,mediated,Mice,Objective,To,explore,role,underlying,mechanism,osteoarthritis,associated,abnormal,catabolism,Methods,extracted,mouse,chondrocytes,were,treated,followed,lipopolysaccharide,divided,into,control,group,LPS+50,nmol,LPS+100,cytotoxicity,was,tested,using,CCK,assay,blot,qPCR,applied,evaluate,expression,inflammatory,biomarkers,extracellular,matrix,molecules,detected,immunofluorescence,Additionally,activity,checked,Hulth,models,generated,examine,vivo,effects,Hematoxylin,eosin,staining,fast,green,immunohistochemistry,histological,changes,Results,below,had,induced,high,TGF,p1,significantly,reduced,In,addition,upregulated,aggrecan,collagen,type,which,downregulated,after,stimulation,ADAMTS,MMP,dropped,response,Furthermore,decreased,Ba,cytoplasm,increased,nuclear,p65,However,these,reversed,pretreatment,Moreover,damages,knees,caused,surgery,mice,restored,Conclusion,impeded,thereby,inhibiting,progression
AB值:
0.4596
相似文献
Effects of Simvastatin on Endoplasmic Reticulum Stress-Mediated Apoptosis in Atherosclerotic Calcification
Li Jianhua;Zhao Libo;Zhou Zhe;Liu Lin;Zou Xiao;Xu Weihao;Fan Li;Yan Muyang;Wang Shengqi-Cardiology Department of the Second Medical Center & National Clinical Research Center for Geriatric Diseases, Chinese People’s Liberation Army General Hospital, Beijing 100853, China;Graduate School of Medical School of Chinese People.s Liberation Army, Beijing 100853, China;Beijing Institute of Radiation Medicine, Beijing 100850, China;Department of Respiratory and Critical Care Medicine of the Second Medical Center & National Clinical Research Center for Geriatric Diseases, Chinese People s Liberation Army General Hospital, Beijing 100093, China;Department of Hyperbaric Oxygen & Institute of Geriatric Cardiovascular Disease, Chinese People s Liberation Army General Hospital, Beijing 100093, China
Total Ginsenoside Extract from Panax ginseng Enhances Neural Stem Cell Proliferation and Neuronal Differentiation by Inactivating GSK-3β
LIN Kai-li;ZHANG Ji;CHUNG Hau-lam;WU Xin-yi;LIU Bin;ZHAO Bo-xin;SZE Stephen Cho-wing;ZHOU Ping-zheng;YUNG Ken Kin-lam;ZHANG Shi-qing-School of Public Health,Guangzhou Medical University,Guangzhou 511436,China;Department of Biology,Hong Kong Baptist University(HKBU),Hong Kong Special Administrative Region 999077,China;HKBU Shenzhen Research Institute and Continuing Education,Shenzhen,Guangdong Province 518057,China;Department of Plastic Surgery,Zhujiang Hospital,Southern Medical University,Guangzhou 510515,China;Guangzhou Institute of Cardiovascular Disease,the Second Affiliated Hospital of Guangzhou Medical University,Guangzhou 510260,China;Department of Pharmacy,Nanfang Hospital,Southern Medical University,Guangzhou 510515,China;Guangdong Provincial Key Laboratory of New Drug Screening,School of Pharmaceutical Sciences,Southern Medical University,Guangzhou 510515,China
Danlou Tablet Improves Chronic Intermittent Hypoxia-Induced Dyslipidemia and Arteriosclerosis by HIF-1 α-Angptl4 mRNA Signaling Pathway
TANG Jing-jing;LI Guang-xi;LIU Zhi-guo;YI Rong;YU Dong;ZHANG Yue-bo;ZHAO Shuang-qiao;WANG Shi-han-Department of Pneumology,Guang'anmen Hospital,Chinese Academy of Chinese Medical Sciences,Beijing(100053),China;Department of Pulmonary and Critical Care Medicine,Mayo Clinic,Rochester,MN 55905,United States;Drug Clinical Trial Agency,Guang'anmen Hospital,Chinese Academy of Chinese Medical Sciences,Beijing(100053),China;Department of Cardiovascular Medicine,Mayo Clinic,Rochester,MN 55905,United States;Department of Gynecology,Guang'anmen Hospital,Chinese Academy of Chinese Medical Sciences,Beijing(100053),China;Department of Cardiovascular Medicine,Guang'anmen Hospital,Chinese Academy of Chinese Medical Sciences,Beijing(100053),China
Acupuncture and Moxibustion Inhibited Intestinal Epithelial-Mesenchymal Transition in Patients with Crohn's Disease Induced by TGF-β1/Smad3/Snail Pathway:A Clinical Trial Study
GUO Sen;ZHOU Jing;ZHANG Liang;BAO Chun-hui;ZHAO Ji-meng;GAO Yan-ling;WU Pin;WENG Zhi-jun;SHI Yin-Graduate School,Shanghai University of Traditional Chinese Medicine,Shanghai(201203),China;Department of Acupuncture and Moxibustion,Shanghai Traditional Chinese Medicine Integrated Hospital,Shanghai University of Traditional Chinese Medicine,Shanghai(200082),China;Department of Acupuncture and Moxibustion,Yueyang Hospital of Integrated Traditional Chinese and Western Medicine Affiliated to Shanghai University of Traditional Chinese Medicine,Shanghai(200437),China;Key Laboratory of Acupuncture and Immunological Effects,Shanghai Research Institute of Acupuncture and Meridian,Shanghai(200030),China;Outpatient Department,Shanghai Research Institute of Acupuncture and Meridian,Shanghai(200030),China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。