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   Hyperocclusion up-regulates CCL3 expression in CCL2- and CCR2-deficient mice  
   
نویسنده tsutsumi t. ,kajiya h. ,goto k.t. ,takahashi y. ,okabe k.
منبع journal of dental research - 2013 - دوره : 92 - شماره : 1 - صفحه:65 -70
چکیده    Excessive mechanical stress (ms) during hyperocclusion is known to result in disappearance of the alveolar hard line,enlargement of the periodontal ligament (pdl) space,and destruction of alveolar bone,leading to occlusal traumatism. we have recently reported that ms induces predominantly c-c chemokine ligand (ccl) 2 expression in pdl tissues,leading,via c-c chemokine receptor (ccr) 2,to ms-dependent osteoclastogenesis in alveolar bone. thus,we hypothesize that ablation of the ccl2/ccr2 signaling pathway should suppress ms-induced osteoclastogenesis-associated chemokines and alleviate occlusal traumatism. we examined the effect of ms on chemokine expression and osteoclastogenesis using in vivo and in vitro hyperocclusion models with ccl2-deficient (ccl2(-/-)) and ccr2-deficient (ccr2(-/-)) mice. compared with that in wild-type mice,expression of ccl3 in pdl cells and trap-positive cells in alveolar bone from ccl2(-/-) and ccr2(-/-) mice was up-regulated,even in the absence of ms. furthermore,the expression of ccl3 and trap-positive cells was significantly increased after both 4 and 7 days of hyperocclusal ms loading in ccl2(-/-) and ccr2(-/-) mice. hyperocclusion induced compensatory ccl3 expression and promoted osteoclastogenesis to counterbalance deficient ccl2/ccr2 signaling,suggesting that co-expression of ccl3 with ccl2 may precipitate synergistic,ms-dependent alveolar bone destruction during occlusal traumatism. © 2013 international & american associations for dental research.
کلیدواژه bone resorption; chemokine CCL3; mechanical stress; periodontal ligament; traumatic dental occlusion
آدرس department of physiological science and molecular biology,fukuoka dental college,2-15-1 tamura,sawara-ku,fukuoka 8140193,japan,department of oral rehabilitation,fukuoka dental college,fukuoka, Japan, department of physiological science and molecular biology,fukuoka dental college,2-15-1 tamura,sawara-ku,fukuoka 8140193, Japan, department of dental hygiene,fukuoka college of health sciences,fukuoka, Japan, department of oral rehabilitation,fukuoka dental college,fukuoka, Japan, department of physiological science and molecular biology,fukuoka dental college,2-15-1 tamura,sawara-ku,fukuoka 8140193, Japan
 
     
   
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