首站-论文投稿智能助手
典型文献
Aberrant NF-κB activation in odontoblasts orchestrates inflammatory matrix degradation and mineral resorption
文献摘要:
Inflammation-associated proteinase functions are key determinants of inflammatory stromal tissues deconstruction. As a specialized inflammatory pathological process, dental internal resorption (IR) includes both soft and hard tissues deconstruction within the dentin-pulp complex, which has been one of the main reasons for inflammatory tooth loss. Mechanisms of inflammatory matrix degradation and tissue resorption in IR are largely unclear. In this study, we used a combination of Cre-loxP reporter, flow cytometry, cell transplantation, and enzyme activities assay to mechanistically investigate the role of regenerative cells, odontoblasts (ODs), in inflammatory mineral resorption and matrices degradation. We report that inflamed ODs have strong capabilities of matrix degradation and tissue resorption. Traditionally, ODs are regarded as hard-tissue regenerative cells;however, our data unexpectedly present ODs as a crucial population that participates in IR-associated tissue deconstruction. Specifically, we uncovered that nuclear factor-kappa b (NF-κB) signaling orchestrated Tumor necrosis factorα(TNF-α)-induced matrix metalloproteinases (Mmps) and Cathepsin K (Ctsk) functions in ODs to enhance matrix degradation and tissue resorption. Furthermore, TNF-αincreases Rankl/Opg ratio in ODs via NF-κB signaling by impairing Opg expression but increasing Rankl level, which utterly makes ODs cell line 17IIA11 (A11) become Trap+and Ctsk+multinucleated cells to perform resorptive actions. Blocking of NF-κB signaling significantly rescues matrix degradation and resorptive functions of inflamed ODs via repressing vital inflammatory proteinases Mmps and Ctsk. Utterly, via utilizing NF-κB specific small molecule inhibitors we satisfactorily attenuated inflammatory ODs-associated human dental IR in vivo. Our data reveal the underlying mechanisms of inflammatory matrix degradation and resorption via proteinase activities in IR-related pathological conditions.
文献关键词:
作者姓名:
Fanyuan Yu;Fengli Huo;Feifei Li;Yanqin Zuo;Chenglin Wang;Ling Ye
作者机构:
State Key Laboratory of Oral Diseases&National Clinical Research Center for Oral Diseases,West China Hospital of Stomatology,Sichuan University,Chengdu,China;Department of Endodontics,West China Stomatology Hospital,Sichuan University,Chengdu,China
引用格式:
[1]Fanyuan Yu;Fengli Huo;Feifei Li;Yanqin Zuo;Chenglin Wang;Ling Ye-.Aberrant NF-κB activation in odontoblasts orchestrates inflammatory matrix degradation and mineral resorption)[J].国际口腔科学杂志(英文版),2022(01):80-90
A类:
odontoblasts,ODs,Mmps,Rankl,Opg,utterly,17IIA11,Trap+and,Ctsk+multinucleated,resorptive,proteinases,Utterly
B类:
Aberrant,activation,orchestrates,inflammatory,matrix,degradation,mineral,resorption,Inflammation,associated,functions,are,key,determinants,stromal,tissues,deconstruction,specialized,pathological,process,dental,internal,includes,both,soft,hard,within,dentin,pulp,complex,which,has,been,one,main,reasons,tooth,loss,Mechanisms,largely,unclear,this,study,used,combination,Cre,loxP,reporter,flow,cytometry,transplantation,enzyme,activities,assay,mechanistically,investigate,role,regenerative,cells,matrices,We,that,inflamed,have,strong,capabilities,Traditionally,regarded,however,our,data,unexpectedly,present,crucial,population,participates,Specifically,uncovered,nuclear,kappa,signaling,orchestrated,Tumor,necrosis,induced,metalloproteinases,Cathepsin,enhance,Furthermore,increases,ratio,via,by,impairing,expression,but,increasing,level,makes,line,become,perform,actions,Blocking,significantly,rescues,repressing,vital,utilizing,specific,small,molecule,inhibitors,satisfactorily,attenuated,human,vivo,Our,reveal,underlying,mechanisms,related,conditions
AB值:
0.465133
相似文献
Novel dual inhibitor for targeting PIM1 and FGFR1 kinases inhibits colorectal cancer growth in vitro and patient-derived xenografts in vivo
Fanxiang Yin;Ran Zhao;Dhilli Rao Gorja;Xiaorong Fu;Ning Lu;Hai Huang;Beibei Xu;Hanyong Chen;Jung-Hyun Shim;Kangdong Liu;Zhi Li;Kyle Vaughn Laster;Zigang Dong;Mee-Hyun Lee-Department of Pathophysiology,School of Basic Medical Sciences,Zhengzhou University,Zhengzhou 450001,China;China-US(Henan)Hormel Cancer Institute,Zhengzhou 450008,China;Translational Medical Center,the First Affiliated Hospital of Zhengzhou University,Zhengzhou 450052,China;The Hormel Institute,University of Minnesota,Austin,MN 55912,USA;Department of Biomedicine,Health&Life Convergencen Science,BK21 Four,College of Pharmacy,Mokpo National University,Jeonnam 58554,Republic of Korea;The Collaborative Innovation Center of Henan Province for Cancer Chemoprevention,Zhengzhou 450001,China;Department of General Surgery,the Affiliated Tumor Hospital of Zhengzhou University,Zhengzhou 450008,China;College of Korean Medicine,Dongshin University,Naju 58245,Republic of Korea
Stratifin promotes renal dysfunction in ischemic and nephrotoxic AKI mouse models via enhancing RIPK3-mediated necroptosis
Fang Wang;Jia-nan Wang;Xiao-yan He;Xiao-guo Suo;Chao Li;Wei-jian Ni;Yu-ting Cai;Yuan He;Xin-yun Fang;Yu-hang Dong;Tian Xing;Ya-ru Yang;Feng Zhang;Xiang Zhong;Hong-mei Zang;Ming-ming Liu;Jun Li;Xiao-ming Meng;Juan Jin-Inflammation and Immune Mediated Diseases Laboratory of Anhui Province,Anhui Institute of Innovative Drugs,School of Pharmacy,Anhui Medical University,The Key Laboratory of Anti-inflammatory of Immune Medicines,Ministry of Education,Hefei 230032,China;Department of Pharmacy,Anhui Provincial Hospital,The First Affiliated Hospital of USTC,Division of Life Sciences and Medicine,University of Science and Technology of China,Hefei 230001,China;Hospital of Stomatology,Anhui Medical University,Key Laboratory of Oral Diseases Research of Anhui Province,Hefei 230032,China;Department of Pharmacy,Changzheng Hospital,Naval Medical University,Shanghai 200003,China;Department of Nephrology,Sichuan Academy of Medical Sciences&Sichuan Provincial People's Hospital,School of Medicine,University of Electronic Science and Technology of China,Chengdu 610072,China;School of Basic Medical Sciences,Anhui Medical University,Hefei 230032,China
Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
Xiao Guan;Guo-rong Dan;Yao Yang;Yan Ji;Wen-jing Lai;Fang-jie Wang;Meng Meng;Bang-hui Mo;Pei Huang;Ting-ting You;Ya-fei Deng;Liang Song;Wei Guo;Ping Yi;Jian-hua Yu;Yuan Gao;Wei-nian Shou;Bing-bo Chen;You-cai Deng;Xiao-hui Li-Institute of Materia Medica,College of Pharmacy,Army Medical University(Third Military Medical University),Chongqing 400038,China;Department of Obstetrics and Gynecology,The Third Affiliated Hospital of Chongqing Medical University,Chongqing 401120,China;The Ohio State University Comprehensive Cancer Center and the James Cancer Hospital,Columbus,OH 43210,USA;Department of Hematology&Hematopoietic Cell Transplantation,City of Hope National Medical Center and Beckman Research Institute,Duarte,CA 91010,USA;Southwest Hospital/Southwest Eye Hospital,Army Medical University(Third Military Medical University),Chongqing 400038,China;Herman B Wells Center for Pediatric Research,Department of Pediatrics,Indiana University School of Medicine,Indianapolis,IN 46202,USA;Laboratory Animal Center,Army Medical University(Third Military Medical University),Chongqing 400038,China
CDDO-Im ameliorates osteoarthritis and inhibits chondrocyte apoptosis in mice via enhancing Nrf2-dependent autophagy
Jian Dong;Kai-jia Zhang;Gao-cai Li;Xing-ren Chen;Jia-jia Lin;Jia-wei Li;Zhong-yang Lv;Zhao-zhi Deng;Jin Dai;Wangsen Cao;Qing Jiang-Division of Sports Medicine and Adult Reconstructive Surgery,Department of Orthopedic Surgery,State Key Laboratory of Pharmaceutical Biotechnology,Nanjing Drum Tower Hospital,The Affiliated Hospital of Nanjing University Medical School,Nanjing 210008,China;Department of Orthopedics,Union Hospital,Tongji Medical College,Huazhong University of Science and Technology,Wuhan 430022,China;Department of Critical Care Medicine,Jinling Hospital,School of Medicine,Nanjing University Medical School,Nanjing 210003,China;Center for Organ Fibrosis and Remodeling Research,Jiangsu Key Lab of Molecular Medicine,Nanjing University Medical School,Nanjing 210093,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。