Anomalies of craniofacial skeleton and teeth in cleidocranial dysplasia.

S Kreiborg, B L Jensen, P Larsen, D T Schleidt, T Darvann
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Abstract

Mutations involving the transcription factor CBFA1 cause cleidocranial dysplasia (CCD) in man. Recently, a mouse model of CCD has been generated (Cbfal +/-) [Komori et al., 1997], and disturbances of osteoclast differentiation have been documented. It has been shown that these animals exhibit hypoplastic clavicles and nasal bones, and retarded ossification of parietal, interparietal, and supraoccipital bones. Humans with CCD show all these features, including severely retarded ossification of the cranial base, strongly suggesting that both intramembranous ossification and endochondral ossification are affected. In addition, CCD patients have multiple supernumerary teeth and delayed tooth eruption. The present report presents 3D reconstructions of computerised tomography (CT) scans of the craniofacial region of a CCD boy examined at both 1 and 7 years of age. The anomalies in craniofacial skeleton and teeth are analysed and compared to the findings of our previous clinical studies and to the findings in the animal model. Based on the available information, we suggest that osteoblast, osteoclast, and dentinoclast differentiation may be disturbed in CCD.

锁骨颅发育不良患者颅面骨骼及牙齿的异常。
涉及转录因子CBFA1的突变导致人类锁骨颅发育不良(CCD)。最近,一种CCD小鼠模型被建立(Cbfal +/-) [Komori et al., 1997],并记录了破骨细胞分化的紊乱。研究表明,这些动物的锁骨和鼻骨发育不全,顶骨、顶骨间骨和枕上骨骨化迟缓。患有CCD的人表现出所有这些特征,包括颅底骨化严重迟缓,这强烈表明膜内骨化和软骨内骨化都受到影响。此外,CCD患者有多颗多余牙齿和延迟出牙。本报告介绍了一名1岁和7岁患有CCD的男孩颅面区域的计算机断层扫描(CT)的三维重建。我们分析了颅面骨骼和牙齿的异常,并将其与我们之前的临床研究结果和动物模型的结果进行了比较。根据现有的信息,我们认为在CCD中成骨细胞、破骨细胞和破牙本质细胞的分化可能受到干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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