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:
中图分类号:
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
文献出处:
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
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