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   Hypotonic stress induces RANKL via transient receptor potential melastatin 3 (TRPM3) and Vaniloid 4 (TRPV4) in human PDL cells  
   
نویسنده son g.y. ,yang y.m. ,park w.s. ,chang i. ,shin d.m.
منبع journal of dental research - 2015 - دوره : 94 - شماره : 3 - صفحه:473 -481
چکیده    Bone remodeling occurs in response to various types of mechanical stress. the periodontal ligament (pdl) plays an important role in mechanical stress-mediated alveolar bone remodeling. however,the underlying mechanism at the cellular level has not been extensively studied. in this study,we investigated the effect of shear stress on the expression of bone remodeling factors,including receptor activator of nuclear factor-kappa b (nf-b) ligand (rankl) and osteoprotegerin (opg),as well as its upstream signaling pathway in primary human pdl cells. we applied hypotonic stress to reproduce shear stress to pdl cells. hypotonic stress induced the messenger rna (mrna) and protein expression of rankl but not opg. it also increased intracellular ca2+ concentration ([ca2+]i). extracellular ca2+ depletion and nonspecific plasma membrane ca2+ channel blockers completely inhibited the increase in both [ca2+]i and rankl mrna expression. we identified the expression and activation of transient receptor potential melastatin 3 (trpm3) and vaniloid 4 (trpv4) channels in pdl cells. pregnenolone sulfate (ps) and 4α-phorbol 12,13-didecanoate (4α-pdd),which are agonists of trpm3 and trpv4,augmented ca2+ influx and rankl mrna expression. both pharmacological (2-aminoethoxydiphenyl borate [2-apb],ruthenium red [rr],ononetin [ono],and hc 067047 [hc]) and genetic (small interfering rna [sirna]) inhibitors of trpm3 and trpv4 reduced the hypotonic stress-mediated increase in [ca2+]i and rankl mrna expression. our study shows that hypotonic stress induced rankl mrna expression via trpm3- and trpv4-mediated extracellular ca2+ influx and rankl expression. this signaling pathway in pdl cells may play a critical role in mechanical stress-mediated alveolar bone remodeling. © international & american associations for dental research 2015.
کلیدواژه bone remodeling/regeneration; cell signaling; ion channels; mechanotransduction; osmotic stress; periodontal ligament
آدرس department of oral biology,yonsei university college of dentistry,50 yonsei-ro,seodaemun-gu,seoul,south korea,bk21 plus project,yonsei university college of dentistry,seoul, South Korea, department of oral biology,yonsei university college of dentistry,50 yonsei-ro,seodaemun-gu,seoul, South Korea, department of advanced general dentistry,yonsei university college of dentistry,seoul, South Korea, department of oral biology,yonsei university college of dentistry,50 yonsei-ro,seodaemun-gu,seoul, South Korea, department of oral biology,yonsei university college of dentistry,50 yonsei-ro,seodaemun-gu,seoul,south korea,bk21 plus project,yonsei university college of dentistry,seoul, South Korea
 
     
   
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