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牙齿初始移动过程中人类龈沟液中基质金属蛋白酶1和2的水平

Levels of matrix metalloproteinases 1 and 2 in human gingival crevicular fluid during initial tooth movement.

作者信息

Cantarella Giuseppina, Cantarella Rosita, Caltabiano Mario, Risuglia Nunziata, Bernardini Renato, Leonardi Rosalia

机构信息

Department of Pharmacology, University of Catania, Catania, Italy.

出版信息

Am J Orthod Dentofacial Orthop. 2006 Nov;130(5):568.e11-6. doi: 10.1016/j.ajodo.2006.04.020.

Abstract

INTRODUCTION

During orthodontic treatment, the early response of periodontal tissues to mechanical stress involves several metabolic changes that allow tooth movement. Many studies have evaluated these modifications through the analysis of various metabolites released into gingival crevicular fluid (GCF). The purpose of this investigation was to evaluate matrix metalloproteinase (MMP)-1 and MMP-2 in the GCF of human teeth exposed to orthodontic force on both the tension and compression sides in the initial phase of orthodontic tooth movement.

METHODS

GCF samples were obtained from 11 healthy orthodontic patients (8 girls, 3 boys; age, 13-15 years; mean, 13.9 years) who needed their 4 first premolars extracted for orthodontic reasons. In each patient, the left maxillary canine having the fixed orthodontic appliance was used as the test tooth, and its antagonist, with no appliance, was the control tooth. Orthodontic force was applied by using a Sentalloy coil-spring (GAC International, Bohemia, NY) of 150 g. The GCF sampling on the mesiobuccal and distobuccal aspects of each experimental and control tooth was performed at specific times up to 8 hours with paper strips. Processing was carried out with western blot analysis to detect MMP-1 and MMP-2 levels on the compression and tension sides.

RESULTS

Compression force induced a significant increase of MMP-1 protein after 1 hour; the increase lasted until the third hour of force application and disappeared thereafter. The tension force induced significantly increased levels of the MMP-1 protein after just 1 hour of force application. MMP-2 protein was induced by compression and increased significantly in a time-dependent fashion, reaching a peak after 8 hours of force application. On the tension side, MMP-2 was significantly increased after 1 hour but gradually returned to basal levels within 8 hours.

CONCLUSIONS

Orthodontic forces affect both MMP-1 and MMP-2 protein levels on the compression and the tension sides, although to different extents, whereas MMP-1 and MMP-2 protein levels change in a time-dependent fashion.

摘要

引言

在正畸治疗期间,牙周组织对机械应力的早期反应涉及多种代谢变化,这些变化使得牙齿能够移动。许多研究通过分析释放到龈沟液(GCF)中的各种代谢物来评估这些改变。本研究的目的是评估在正畸牙齿移动初始阶段,正畸力作用下人类牙齿张力侧和压力侧龈沟液中基质金属蛋白酶(MMP)-1和MMP-2的情况。

方法

从11名因正畸需要拔除4颗第一前磨牙的健康正畸患者(8名女孩,3名男孩;年龄13 - 15岁,平均13.9岁)中获取龈沟液样本。在每位患者中,佩戴固定正畸矫治器的左上尖牙用作测试牙,其未佩戴矫治器的对颌牙作为对照牙。使用150 g的Sentalloy螺旋弹簧(GAC International,波希米亚,纽约)施加正畸力。在每个实验牙和对照牙的近中颊侧和远中颊侧,使用纸条在特定时间直至8小时进行龈沟液采样。采用蛋白质印迹分析来检测压力侧和张力侧的MMP-1和MMP-2水平。

结果

压力在施加1小时后诱导MMP-1蛋白显著增加;这种增加持续到施加力的第3小时,此后消失。张力在施加力仅1小时后就诱导MMP-1蛋白水平显著升高。压力诱导MMP-2蛋白,且以时间依赖性方式显著增加,在施加力8小时后达到峰值。在张力侧,MMP-2在1小时后显著增加,但在8小时内逐渐恢复到基础水平。

结论

正畸力对压力侧和张力侧的MMP-1和MMP-2蛋白水平均有影响,尽管程度不同,而MMP-1和MMP-2蛋白水平以时间依赖性方式变化。

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