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大鼠选择性牙槽骨皮质剥脱术后小梁骨和硬骨板的建模

Modeling of trabecular bone and lamina dura following selective alveolar decortication in rats.

作者信息

Sebaoun Jean-David, Kantarci Alpdogan, Turner John W, Carvalho Roberto S, Van Dyke Thomas E, Ferguson Donald J

机构信息

Department of Orthodontics, School of Dental Medicine, Boston University, Boston, MA, USA.

出版信息

J Periodontol. 2008 Sep;79(9):1679-88. doi: 10.1902/jop.2008.080024.

Abstract

BACKGROUND

Modifying the balance between resorption and apposition through selectively injuring the cortical plate of the alveolus has been an approach to speed tooth movement and is referred to as periodontally accelerated osteogenic orthodontics. The aim of this study was to investigate the alveolar response to corticotomy as a function of time and proximity to the surgical injury in a rat model.

METHODS

Maxillary buccal and lingual cortical plates were injured in 36 healthy adult rats adjacent to the upper left first molars. Twenty-four animals were euthanized at 3, 7, or 11 weeks. In one group, the maxillae were removed and stripped of soft tissues, and histomorphometric analysis was performed to study alveolar spongiosa and periodontal ligament (PDL) modeling dynamics. Catabolic activity was analyzed with tartrate-resistant acid phosphatase-positive osteoclasts and preosteoclasts. Anabolic actions were measured using a fluorescent vital bone stain series followed by sacrifice at 30 and 51 days. To further analyze the new bone formation, a separate group of animals were fed with calcein fluorescent stain and processed for non-decalcified fluorescent stain histology.

RESULTS

At 3 weeks, the surgery group had significantly (P <0.05) less calcified spongiosa bone surface, greater periodontal ligament surface, higher osteoclast number, and greater lamina dura apposition width. The catabolic activity (osteoclast count) and anabolic activity (apposition rate) were three-fold greater, calcified spongiosa decreased by two-fold, and PDL surface increased by two-fold. Surgical injury to the alveolus that induced a significant increase in tissue turnover by week 3 dissipated to a steady state by postoperative week 11. The impact of the injury was localized to the area immediately adjacent to the decortication injury.

CONCLUSION

Selective alveolar decortication induced increased turnover of alveolar spongiosa, and the activity was localized; dramatic escalation of demineralization-remineralization dynamics is the likely biologic mechanism underlying rapid tooth movement following selective alveolar decortication.

摘要

背景

通过选择性损伤牙槽骨皮质板来改变吸收与沉积之间的平衡,一直是加速牙齿移动的一种方法,被称为牙周加速成骨正畸术。本研究的目的是在大鼠模型中,研究牙槽骨对皮质切开术的反应随时间以及与手术损伤距离的变化情况。

方法

在36只健康成年大鼠的左上第一磨牙附近对上颌颊侧和舌侧皮质板进行损伤。24只动物在3周、7周或11周时实施安乐死。在一组中,取出上颌骨并去除软组织,进行组织形态计量分析以研究牙槽松质骨和牙周膜(PDL)的建模动态。用抗酒石酸酸性磷酸酶阳性破骨细胞和前破骨细胞分析分解代谢活性。使用荧光活体骨染色系列测量合成代谢作用,然后在30天和51天时处死动物。为了进一步分析新骨形成,另外一组动物喂食钙黄绿素荧光染料,并进行非脱钙荧光染色组织学处理。

结果

在3周时,手术组的钙化松质骨表面明显减少(P<0.05),牙周膜表面增加,破骨细胞数量增多,硬骨板沉积宽度增大。分解代谢活性(破骨细胞计数)和合成代谢活性(沉积率)增加了两倍,钙化松质骨减少了一半,牙周膜表面增加了一倍。到第3周时,对牙槽骨的手术损伤导致组织更新显著增加,到术后第11周消散至稳定状态。损伤的影响局限于去皮质损伤紧邻的区域。

结论

选择性牙槽骨去皮质术可导致牙槽松质骨更新增加,且这种活性是局部性的;脱矿-再矿化动态的急剧升级可能是选择性牙槽骨去皮质术后快速牙齿移动的生物学机制。

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