Domon S, Shimokawa H, Yamaguchi S, Soma K
First Department of Orthodontics, Faculty of Dentistry, Tokyo Medical and Dental University, Japan.
Eur J Orthod. 2001 Aug;23(4):339-48. doi: 10.1093/ejo/23.4.339.
To investigate the mechanism of bone formation during tooth movement, in situ hybridization was performed with digoxigenin-labelled RNA probes to detect bone sialoprotein (BSP) and type I collagen mRNAs in the dentoalveolar tissue of 72 Sprague-Dawley rats. An elastic band was inserted between the first and second right maxillary molars, and the teeth experimentally moved for 1, 3, and 7 days. The left first maxillary molar was used as the control. For the untreated molars, osteoblasts and osteocytes near the distal surface of the interradicular septum (IRS) expressed a high level of both BSP and type I collagen mRNAs, while cells on the mesial side of the IRS showed a low level of these mRNAs. For the first molars subjected to experimental tooth movement, a high level of type I collagen mRNA expression was found in the osteoblasts on the tension side of the IRS after 1 day of experimental tooth movement. A high level of BSP mRNA was detected after 3 days of experimental tooth movement. However, a negligible amount of both mRNAs was found in cells on the compression side. These results support the hypothesis that BSP may be involved in mineralization during physiological bone remodelling. On application of orthodontic force, osteoblasts were activated and induced to express BSP mRNA, which is involved in bone remodelling due to orthodontic force. In addition, response to the orthodontic force was observed in osteocytes.
为了研究牙齿移动过程中骨形成的机制,使用地高辛标记的RNA探针进行原位杂交,以检测72只Sprague-Dawley大鼠牙槽组织中骨涎蛋白(BSP)和I型胶原mRNA。在右侧上颌第一和第二磨牙之间插入弹性带,使牙齿实验性移动1、3和7天。左侧上颌第一磨牙用作对照。对于未处理的磨牙,根间间隔(IRS)远中表面附近的成骨细胞和骨细胞表达高水平的BSP和I型胶原mRNA,而IRS近中侧的细胞则显示这些mRNA水平较低。对于接受实验性牙齿移动的第一磨牙,实验性牙齿移动1天后,在IRS张力侧的成骨细胞中发现I型胶原mRNA表达水平较高。实验性牙齿移动3天后检测到高水平的BSP mRNA。然而,在受压侧的细胞中发现这两种mRNA的量可以忽略不计。这些结果支持了BSP可能参与生理性骨重塑过程中矿化的假说。施加正畸力后,成骨细胞被激活并诱导表达BSP mRNA,BSP mRNA参与正畸力引起的骨重塑。此外,在骨细胞中观察到对正畸力的反应。