Division of Oral Dysfunction Science, Tohoku University Graduate School of Dentistry, Sendai, Japan.
Anat Rec (Hoboken). 2013 Aug;296(8):1255-63. doi: 10.1002/ar.22731. Epub 2013 Jun 17.
Occlusal forces may induce the physiological teeth migration in humans, but there is little direct evidence. Rat molars are known to migrate distally during aging, possibly caused by occlusal forces. The purpose of this study was to determine if a reduction in occlusion would decrease teeth migration and affect associated periodontal structures such as cementum. To reduce occlusal forces, the right upper first molar (M1) in juvenile rats was extracted. The transition of the position of upper second molar (M2) and formation of M2 cementum was followed during aging. From the cephalometric analyses, upper M2 was located more anterior compared with the original position with aging after M1 extraction. Associated with this "slowing-down" of the physiological drift, cementum thickness on distal surface, but not on mesial surface, of M2 root was significantly increased. The accumulation of alizarin red as vital stain indicative of calcification, was observed in the distal cementum of M2 root only on the side of M1 extraction. Extraction of M1 that results in less functional loading, distinctly attenuates the physiological drift only in the upper dentition. The decreased physiological drift appears to activate acellular cementum formation only on distal surface of M2 root, perhaps due to reduced mechanical stress associated with the attenuated distal drift. In conclusion, the physiological distal drift in rat molars appears to be largely driven by the occlusal force and also affects the formation of acellular cementum. These findings provide additional direct evidence for an important role of occlusal forces in tooth migration.
咬合力量可能会引起人类生理性牙齿迁移,但直接证据很少。已知大鼠磨牙在衰老过程中会向远中移动,可能是由咬合力量引起的。本研究旨在确定减少咬合是否会减少牙齿迁移并影响相关牙周结构,如牙骨质。为了减少咬合力量,从小鼠的右上第一磨牙(M1)中提取。在老化过程中,观察了上颌第二磨牙(M2)位置的变化和 M2 牙骨质的形成。从头影测量分析来看,与 M1 拔除后的原始位置相比,上颌 M2 在老化过程中更靠前。与这种“减缓”生理性漂移相关的是,M2 根远中表面的牙骨质厚度显著增加,但近中表面没有。茜素红作为钙化的活体染色剂的积累,仅在 M1 拔除侧的 M2 根远中牙骨质上观察到。导致功能性负荷减少的 M1 拔除,明显减弱了上颌牙齿的生理性漂移。这种生理性漂移的减少似乎只在 M2 根的远中表面激活了无细胞牙骨质的形成,可能是由于减弱的远中漂移导致机械应力减少。总之,大鼠磨牙的生理性远中漂移似乎主要由咬合力量驱动,并且还影响无细胞牙骨质的形成。这些发现为咬合力量在牙齿迁移中的重要作用提供了额外的直接证据。