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颌骨正畸力与辐射之间的平衡:大鼠模型的微观结构、组织学和分子研究

The Balance between Orthodontic Force and Radiation in the Jawbone: Microstructural, Histological, and Molecular Study in a Rat Model.

作者信息

Dorchin-Ashkenazi Hadas, Ginat-Koton Ravit, Gabet Yankel, Klein Yehuda, Chaushu Stella, Dorchin Hezi, Brosh Tamar, Vered Marilena

机构信息

Department of Orthodontics, School of Dental Medicine, Tel Aviv University, Tel Aviv 69978, Israel.

School of Dental Medicine, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Biology (Basel). 2021 Nov 18;10(11):1203. doi: 10.3390/biology10111203.

Abstract

Irradiation of facial bones is associated with a lifelong risk of osteonecrosis. In a rat model, maxillae were exposed to a single 5 Gy dose of external beam radiation and orthodontic force was applied for 2 weeks on the first maxillary molar; control rats were treated identically without radiation. Tooth movement in irradiated jaws was 30% less than in controls, representing radiation-related damage. Micro-CT, histological, and molecular outcomes of orthodontic tooth movement were studied. Microstructurally, bone parameters (trabecular thickness, bone volume fraction, bone mineral density) were significantly affected by orthodontic force but not by radiation. Histological parameters were influenced only by orthodontic force, especially by an increase in osteoclasts. A molecular study revealed a differential distribution of cells expressing pre-osteoclast markers (RANK+-majority, CD11b+, CD14+-minority), with changes being influenced by orthodontic force (increased CD11b+ and CD14+ cells) and also by radiation (decreased RANK+ cells). The activation status of osteoclasts (TRAP staining) showed an orthodontic-force-related increase, which probably could not fully compensate for the radiation-associated impairment. The overall balance showed that orthodontic force had elicited a substantial microstructural, histological, and functional normalization process in irradiated maxillae but a radiation-induced impact was still conspicuous. Additional studies are needed to validate these findings.

摘要

面部骨骼受照射与终身发生骨坏死的风险相关。在大鼠模型中,对上颌骨给予单次5 Gy剂量的外照射,并对第一上颌磨牙施加正畸力2周;对照大鼠接受相同处理但不进行照射。照射组颌骨的牙齿移动比对照组少30%,这代表了与辐射相关的损伤。研究了正畸牙齿移动的微观CT、组织学和分子学结果。在微观结构上,骨参数(小梁厚度、骨体积分数、骨矿物质密度)受正畸力显著影响,但不受辐射影响。组织学参数仅受正畸力影响,尤其是破骨细胞数量增加。一项分子研究揭示了表达破骨细胞前体标志物的细胞(RANK+为主,CD11b+、CD14+为少数)的差异分布,其变化受正畸力(CD11b+和CD14+细胞增加)以及辐射(RANK+细胞减少)影响。破骨细胞的活化状态(抗酒石酸酸性磷酸酶染色)显示与正畸力相关的增加,这可能无法完全补偿与辐射相关的损伤。总体平衡表明,正畸力在照射的上颌骨中引发了显著的微观结构、组织学和功能正常化过程,但辐射诱导的影响仍然明显。需要进一步研究来验证这些发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d462/8615105/6f5229f221fb/biology-10-01203-g001.jpg

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