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Crevicular tartrate resistant acid phosphatase activity and rate of tooth movement under different continuous force applications

机译:不同连续使用抗性酸性磷酸酶活性和牙齿运动速率下的颈部裂隙

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This study investigated specific activities of tartrate resistant acid phosphatase (TRAP) in gingival?crevicular?fluid (GCF) and cumulative canine movement when two orthodontic forces were applied during orthodontic treatment. Each selected subjects (n = 12) randomly received a 100 and 150 g force for canine retraction either on the right or left site of maxillary arch. GCF was collected at the mesial and distal sites of the canines for 5 consecutive weeks where baseline activity served as control. Canine distance was measured before retraction and weekly (5 weeks) after force application. TRAP activity was determined using spectrophotometer. At the distal site of test canine (150 g force), TRAP activity peaked significantly (P 0.05) TRAP activities were found between 150 and 100 g of forces. There was significantly (P < 0.05) more cumulative canine movement by 5 weeks in 150 g as compared to 100 g force.?TRAP enzyme can be a useful biomarker for monitoring orthodontic tooth movement. A force of 150 g was found to be more optimal in canine retraction than 100 g force.
机译:该研究研究了在牙齿治疗期间施加两种正畸力时粘牙β粘性耐药磷酸酶(Trap)的特异性活性,粘隙β粘虫蛋白(GCF)和累积犬运动。每个选定的受试者(n = 12)随机接收100和150g用于罐头缩回的100和150g力,可在上颌拱的右侧或左侧部位上进行犬齿。 GCF在犬犬的间距和远端部位连续5周收集,其中基线活动作为对照。在施力施用后缩回和每周(5周)之前测量犬距离。使用分光光度计测定陷阱活性。在测试犬的远端部位(150克力),陷阱活性显着达到显着(P 0.05)捕集活动在150到100克力之间。显着(P <0.05)累积犬的累积犬运动在150克中,与100g的力相比,酶可以是用于监测正畸牙齿运动的有用生物标志物。发现150克的力在犬急转中比100g力更优于100g。

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