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首页> 外文期刊>Angle Orthodontist >Biochemical markers of bone metabolism in gingival crevicular fluid during early orthodontic tooth movement
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Biochemical markers of bone metabolism in gingival crevicular fluid during early orthodontic tooth movement

机译:正畸牙齿早期运动时龈沟液中骨代谢的生化指标

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摘要

Objective: To evaluate the expression of an activator of nuclear factor-kappa (RANK), osteoprotegerin (OPG), osteopontin (OPN), and transforming growth factor ?1 (TGF-?1) in gingival crevicular fluid (GCF) of teeth subjected to orthodontic forces. Materials and Methods: A randomized, pilot clinical trial including 10 healthy volunteers was conducted using a split-mouth design. Orthodontic elastic separators were placed between the second premolar and first molar, with the contralateral quadrant serving as a control. The GCF samples were collected from the tension and compression sites at baseline, 24 hours, and 7 days after the placement of separators. The GCF sample volumes were measured using a Periotron 8000, and total protein concentrations were determined. Levels of RANK, OPG, OPN, and TGF-?1 were also analyzed using a multiplex enzyme-linked immunosorbent assay. Results: The control sites remained unchanged throughout the study. In contrast, the concentration of OPG significantly decreased at the compression site by 24 hours, and the amount and concentration of RANK differed significantly between the control, compression, and tension sites after 7 days. A significant increase in absolute TGF-?1 levels was also detected at the compression site versus the control and tension sites after 7 days. Conclusion: Bone metabolism is affected by application of force to the teeth by elastic separators. Both increased expression of bone resorptive mediators (eg, RANK and TGF-?1) and decreased expression of a bone-forming mediator (eg, OPG) on the compression side were detected.
机译:目的:评价核因子-活化因子(RANK),骨保护素(OPG),骨桥蛋白(OPN)和转化生长因子β1(TGF-β1)在牙龈沟液(GCF)中的表达。正畸力。材料和方法:采用裂口设计进行了包括10名健康志愿者的随机,中试临床试验。将正畸弹性隔板放置在第二前磨牙和第一磨牙之间,以对侧象限作为对照。 GCF样本是在放置分隔器后的基线,24小时和7天时从拉伸和压缩部位收集的。使用Periotron 8000测量GCF样品体积,并确定总蛋白浓度。还使用多重酶联免疫吸附测定法分析了RANK,OPG,OPN和TGF-β1的水平。结果:在整个研究中,对照位点保持不变。相反,到24小时,压缩部位的OPG浓度显着降低,而7天后,对照部位,压缩部位和张力部位的RANK含量和浓度也显着不同。 7天后,在压缩部位相对于对照和张力部位,绝对TGF-β1的绝对水平也显着增加。结论:弹性分隔物对牙齿施加力会影响骨骼代谢。既检测到骨吸收介质(例如,RANK和TGF-β1)的表达增加,又检测到压缩侧的骨形成介质(例如,OPG)的表达降低。

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