INSERM, UMR 872, Cordeliers Research Center, Team 5, Laboratory of Oral Molecular Physiopathology, Universities Paris-Diderot, Pierre and Marie Curie and Paris-Descartes, Paris, France.
Cells Tissues Organs. 2011;194(2-4):238-43. doi: 10.1159/000324787. Epub 2011 May 13.
The impact of osteoclast activity on dental development has been previously analyzed but in the context of severe osteopetrosis. The present study sought to investigate the effects of osteoclast hypofunction,present in Msx2 gene knockin mutant mice (Msx2-/-), and hyperfunction, in transgenic mice driving RANK over-expression in osteoclast precursors (RANK(Tg)), on tooth development. In Msx2-/- mice, moderate osteopetrosis was observed, occurring exclusively in the periodontal region. Microradiographical and histological analyses revealed an abnormal dental epithelium histogenesis that gave rise to odontogenic tumor-like structures. This led to impaired tooth eruption, especially of the third mandibular molars. In RANK(Tg) mice, root histogenesis showed site-specific upregulation of dental cell proliferation and differentiation rates. This culminated in roots with a reduced diameter and pulp size albeit of normal length. These two reverse experimental systems will enable the investigation of distinctive dental cell and osteoclast communication in normal growth and tumorigenesis.
破骨细胞活性对牙齿发育的影响此前已被分析,但都是在严重的骨质硬化症背景下进行的。本研究旨在研究破骨细胞功能低下(存在于 Msx2 基因敲入突变小鼠(Msx2-/-)中)和功能亢进(在破骨细胞前体细胞中驱动 RANK 过表达的转基因小鼠(RANK(Tg))中)对牙齿发育的影响。在 Msx2-/- 小鼠中,观察到中度骨质硬化症,仅发生在牙周区域。微射线照相和组织学分析显示出异常的牙上皮组织发生,导致牙源性肿瘤样结构。这导致牙齿萌出受损,特别是第三下颌磨牙。在 RANK(Tg) 小鼠中,根组织发生显示出牙齿细胞增殖和分化率的特定部位上调。最终导致根直径和牙髓尺寸减小,尽管长度正常。这两个反向实验系统将能够研究正常生长和肿瘤发生过程中独特的牙齿细胞和破骨细胞通讯。