首页> 外文期刊>The Cleft Palate-Craniofacial Journal >The Craniofacial Phenotype of the Crouzon Mouse: Analysis of a Model for Syndromic Craniosynostosis Using Three-Dimensional MicroCT
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The Craniofacial Phenotype of the Crouzon Mouse: Analysis of a Model for Syndromic Craniosynostosis Using Three-Dimensional MicroCT

机译:Crouzon小鼠的颅面表型:使用三维MicroCT的颅骨突触综合征模型的分析。

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摘要

Objective: To characterize the craniofacial phenotype of a mouse model for Crouzon syndrome by a quantitative analysis of skull morphology in mutant and wild-type mice and to compare the findings with skull features observed in humans with Crouzon syndrome.nnMethods: MicroCT scans and skeletal preparations were obtained on previously described Fgfr2C342Y/+ Crouzon mutant mice and wild-type mice at 6 weeks of age. Three-dimensional coordinate data from biologically relevant landmarks on the skulls were collected. Euclidean Distance Matrix Analysis was used to quantify and compare skull shapes using these landmark data.nnResults: Obliteration of bilateral coronal sutures was observed in 80% of skulls, and complete synostosis of the sagittal suture was observed in 70%. In contrast, fewer than 40% of lambdoid sutures were found to be fully fused. In each of the 10 Fgfr2C342Y/+ mutant mice analyzed, the presphenoid-basisphenoid synchondrosis was fused. Skull height and width were increased in mutant mice, whereas skull length was decreased. Interorbital distance was also increased in Fgfr2C342Y/+ mice as compared with wild-type littermates. Upper-jaw length was shorter in the Fgfr2C342Y/+ mutant skulls, as was mandibular length.nnConclusion: Skulls of Fgfr2C342Y/+ mice differ from normal littermates in a comparable manner with differences between the skulls of humans with Crouzon syndrome and those of unaffected individuals. These findings were consistent across several regions of anatomic interest. Further investigation into the molecular mechanisms underlying the anomalies seen in the Crouzon mouse model is currently under way.
机译:目的:通过定量分析突变型和野生型小鼠的颅骨形态来表征克劳佐综合征的小鼠颅面表型,并将其与克劳佐综合征的人的颅骨特征进行比较。nn方法:MicroCT扫描和骨骼制剂在先前描述的Fgfr2C342Y / + Crouzon突变小鼠和6周大的野生型小鼠上获得了这些蛋白。收集了来自头骨上生物学相关地标的三维坐标数据。结果:在80%的头骨中观察到双侧冠状缝缝合线消失,而在70%的头骨中发现了矢状缝的完全突触。相反,发现不到40%的Lambdoid缝合线完全融合。在所分析的10只Fgfr2C342Y / +突变小鼠中,每只融合了前蝶突-蝶突突软骨。突变小鼠的头骨高度和宽度增加,而头骨长度减少。与野生同窝仔相比,Fgfr2C342Y / +小鼠的眶间距离也增加。结论:Fgfr2C342Y / +小鼠的头骨与正常同窝人的头骨具有可比性,而且在克鲁氏综合征和未患病个体的头骨之间存在差异。这些发现在解剖学上感兴趣的多个区域是一致的。目前正在进行对在Crouzon小鼠模型中发现的异常现象的分子机制的进一步研究。

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  • 来源
    《The Cleft Palate-Craniofacial Journal》 |2006年第6期|p.740-748|共9页
  • 作者单位

    Dr. Perlyn is Plastic Surgery Resident, Division of Plastic Surgery, Washington University School of Medicine, St. Louis, Missouri. Dr. DeLeon is Assistant Professor, Center for Functional Anatomy and Evolution, Johns Hopkins University, Baltimore, Maryland. Dr. Babbs is Postdoctoral Fellow, Weatherall Institute of Molecular Medicine, University of Oxford, Oxford, United Kingdom. Mr. Govier is Research Assistant, Division of Plastic Surgery, Washington University School of Medicine, St. Louis, Missouri. Mr. Burell is Coordinator, Micro CT Imaging Facility, University of Utah, Salt Lake City, Utah. Dr. Darvann is Research Engineer, School of Dentistry, University of Copenhagen, Copenhagen, Denmark. Dr. Kreiborg is Professor, School of Dentistry, University of Copenhagen, Copenhagen, Denmark. Dr. Morriss-Kay is Professor, Department of Physiology, Anatomy, and Genetics, University of Oxford, Oxford, United Kingdom;

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  • 正文语种 eng
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  • 关键词

    Crouzon syndrome, FGFR2, fibroblast growth factor receptor, mouse model, three-dimensional imaging;

    机译:Crouzon综合征;FGFR2;成纤维细胞生长因子受体;小鼠模型;三维成像;

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