Cielinski M J, Iizuka T, Marks S C
Department of Cell Biology, University of Massachusetts Medical School, Worcester 01655.
Arch Oral Biol. 1994 Nov;39(11):985-90. doi: 10.1016/0003-9969(94)90083-3.
Dental manifestations of the mild, transient osteopetrosis in the rat mutation microphthalmia blanc (mib) were examined. Eruption of all teeth was delayed in mib rats compared to normal littermates. The delays ranged from 5 days for incisors to 3 and 2 days for the first and second molars. Normal rats had straight incisors in the sagittal plane that exhibited signs of wear, but in mib littermates the incisors were maloccluded, distorted, and showed no signs of wear. Radiographic and histological examination of the dentition of 1- and 4-week-old rats revealed that the apical end of incisors in mib rats failed to extend posteriorly to the third molar region as in normal siblings, but ended at the first molar. Histological examination of longitudinal sections of mandibles through the incisors of neonatal normal and mib rats showed that in 1-day-old mutants the incisor was closely surrounded by alveolar bone to which it was ankylosed. The incisor body in mib rats was also malformed, with an indented apical end. This ankylosis was temporary, being resolved by 3 days. These findings show that neonatal reductions in bone resorption cause incisor defects and delay the eruption of all teeth in mib rats. The malocclusion and distortion of incisors of mib rats are likely caused by temporary ankylosis of incisor matrices to alveolar bone. Taken together, these findings illustrate the concept that bone resorption is an essential and rate-limiting element of tooth eruption.
对大鼠突变体小眼白化病(mib)中轻度、短暂性骨硬化症的牙齿表现进行了研究。与正常同窝仔鼠相比,mib大鼠所有牙齿的萌出均延迟。延迟时间从门齿的5天到第一和第二磨牙的3天和2天不等。正常大鼠的门齿在矢状面上是直的,有磨损迹象,但在mib同窝仔鼠中,门齿咬合不正、扭曲,且无磨损迹象。对1周龄和4周龄大鼠牙列的影像学和组织学检查显示,mib大鼠门齿的根尖末端不像正常同胞那样向后延伸至第三磨牙区域,而是止于第一磨牙。对新生正常大鼠和mib大鼠下颌骨通过门齿的纵切面进行组织学检查发现,在1日龄突变体中,门齿被与其粘连的牙槽骨紧密包围。mib大鼠的门齿体也畸形,根尖末端有凹陷。这种粘连是暂时的,在3天时得以解决。这些发现表明,新生期骨吸收减少会导致mib大鼠门齿出现缺陷并延迟所有牙齿的萌出。mib大鼠门齿的咬合不正和扭曲可能是由门齿基质与牙槽骨的暂时粘连引起的。综上所述,这些发现说明了骨吸收是牙齿萌出的一个基本且限速因素这一概念。