Park Joo-Cheol, Herr Yeek, Kim Heung-Joong, Gronostajski Richard M, Cho Moon-Il
Department of Oral Histology and Anatomy, College of Dentistry, Chosun University, Gwang-Ju, Korea.
J Periodontol. 2007 Sep;78(9):1795-802. doi: 10.1902/jop.2007.060363.
Nuclear factor I genes play an important role in the development of the brain, lung, and roots of teeth. We had reported that Nfic-deficient mice form normal crowns, but abnormal roots of molar teeth. However, the mechanism by which the disruption of Nfic gene causes abnormal root formation remains unknown.
To understand this mechanism, the root formation in Nfic-deficient mice was examined and compared to that of wild-type mice by morphological, immunohistochemical, and in situ hybridization analyses.
Nfic-deficient mice formed normal Hertwig's epithelial root sheath (HERS) but severely disrupted odontoblast differentiation, leading to the formation of aberrant odontoblasts in the early stage of root formation. They became dissociated and polygonal in shape, lost their orientation and polarity, and did not express dentin sialophosphoprotein. The abnormal roots contained trapped aberrant odontoblasts, thereby resembling osteodentin in overall morphology. No osteoclasts were associated with abnormal roots. Further, the abnormal roots exhibited a decreased number of cementoblasts and cementum formation on the root surface.
The loss of Nfic did not interfere with the formation of HERS, but it caused disrupted odontoblast differentiation, which resulted in the formation of short and abnormal roots, and decreased cementum. This finding suggests that root dentin is required for normal cementum formation. Therefore, Nfic may be a key regulator of root odontoblast differentiation and root formation.
核因子I基因在脑、肺和牙根的发育中起重要作用。我们曾报道,Nfic基因缺陷型小鼠形成正常的牙冠,但磨牙根异常。然而,Nfic基因破坏导致牙根形成异常的机制尚不清楚。
为了解这一机制,通过形态学、免疫组织化学和原位杂交分析,对Nfic基因缺陷型小鼠的牙根形成进行检查,并与野生型小鼠进行比较。
Nfic基因缺陷型小鼠形成正常的赫特维希上皮根鞘(HERS),但成牙本质细胞分化严重受损,导致在牙根形成早期形成异常的成牙本质细胞。它们变得解离且呈多边形,失去了方向和极性,并且不表达牙本质涎磷蛋白。异常牙根中含有被困的异常成牙本质细胞,因此在整体形态上类似于骨样牙本质。没有破骨细胞与异常牙根相关。此外,异常牙根表面的成牙骨质细胞数量减少,牙骨质形成减少。
Nfic的缺失不影响HERS的形成,但导致成牙本质细胞分化受损,从而导致短而异常的牙根形成以及牙骨质减少。这一发现表明,牙根牙本质是正常牙骨质形成所必需的。因此,Nfic可能是牙根成牙本质细胞分化和牙根形成的关键调节因子。