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动态加载刺激下颌骨髁突改建。

Dynamic loading stimulates mandibular condyle remodeling.

机构信息

Department of Orthodontics, New York University College of Dentistry, New York, New York.

CTOR Academy, Hoboken, New Jersey.

出版信息

J World Fed Orthod. 2022 Oct;11(5):146-155. doi: 10.1016/j.ejwf.2022.08.002. Epub 2022 Sep 22.

Abstract

BACKGROUND

We and others have reported that low-magnitude high-frequency dynamic loading has an osteogenic effect on alveolar bone. Since chondrocytes and osteoblasts originate from the same progenitor cells, we reasoned that dynamic loading may stimulate a similar response in chondrocytes. A stimulating effect could be beneficial for patients with damaged condylar cartilage or mandibular deficiency.

METHODS

Studies were conducted on growing Sprague-Dawley rats divided into three groups: control, static load, and dynamic load. The dynamic load group received a dynamic load on the lower right molars 5 minutes per day with a 0.3 g acceleration and peak strain of 30 με registered by accelerometer and strain gauge. The static load group received an equivalent magnitude of static force (30 με). The control group did not receive any treatment. Samples were collected at days 0, 28, and 56 for reverse transcriptase polymerase chain reaction analysis, microcomputed tomography, and histology and fluorescent microscopy analysis.

RESULTS

Our experiments showed that dynamic loading had a striking effect on condylar cartilage, increasing the proliferation and differentiation of mesenchymal cells into chondrocytes, and promoting chondrocyte maturation. This effect was accompanied by increased endochondral bone formation resulting in lengthening of the condylar process.

CONCLUSIONS

Low-magnitude, high-frequency dynamic loading can have a positive effect on condylar cartilage and endochondral bone formation in vivo. This effect has the potential to be used as a treatment for regenerating condylar cartilage and to enhance the effect of orthopedic appliances on mandibular growth.

摘要

背景

我们和其他人已经报道了低幅度高频率动态加载对牙槽骨具有成骨作用。由于软骨细胞和成骨细胞起源于相同的祖细胞,我们推断动态加载可能对软骨细胞产生类似的刺激。这种刺激可能对患有髁突软骨损伤或下颌骨缺损的患者有益。

方法

研究对象为生长中的 Sprague-Dawley 大鼠,分为三组:对照组、静态负荷组和动态负荷组。动态负荷组每天对右下磨牙施加 5 分钟的动态负荷,加速度为 0.3g,通过加速度计和应变计记录的峰值应变为 30 με。静态负荷组接受等效大小的静态力(30 με)。对照组不接受任何治疗。在第 0、28 和 56 天采集样本,进行逆转录聚合酶链反应分析、微计算机断层扫描和组织学及荧光显微镜分析。

结果

我们的实验表明,动态加载对髁突软骨有显著影响,增加间充质细胞增殖并向软骨细胞分化,并促进软骨细胞成熟。这种作用伴随着骺软骨内骨形成的增加,导致髁突过程的延长。

结论

低幅度、高频率的动态加载对体内髁突软骨和骺软骨内骨形成具有积极作用。这种作用有可能被用作再生髁突软骨的治疗方法,并增强矫形器具对下颌生长的效果。

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