Tgfbr2/Osx-Cre小鼠颅面矿化组织缺损三维形态学定量研究。

IF 0.6 Q4 DENTISTRY, ORAL SURGERY & MEDICINE
Oral Science International Pub Date : 2021-09-01 Epub Date: 2021-01-08 DOI:10.1002/osi2.1099
Taylor Nicholas Snider, Ke'ale W Louie, Gabrielle Zuzo, Antonio Carlos de Oliveira Ruellas, Richard Christian Solem, Lucia H S Cevidanes, Honghao Zhang, Yuji Mishina
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引用次数: 4

摘要

颅面形态受颅骨、颌和牙齿等矿化结构的生长、发育和三维(3D)关系的影响。尽管颅骨和牙本质在这一区域有不同的作用,但它们来源于间充质细胞,而间充质细胞会受到TGF-β信号通路的干扰。TGFBR2编码一种跨膜受体,该受体是典型的smad依赖性TGF-β信号通路的一部分,该基因的突变与Loeys-Dietz综合征有关,Loeys-Dietz综合征通常表现为颅缝闭锁和腭裂等颅面症状。为了研究Tgfbr2在未成熟但稳定的矿化组织形成细胞中的作用,我们分析了osx表达细胞中Tgfbr2条件缺失的小鼠出生后颅面形态。基于3D形状的比较技术的新应用表明,表达osx的细胞中的Tgfbr2导致出生后臼齿根和前颅生长受损。这些发现支持了使用类似Tgfbr2条件敲除模型的研究结果,强调了使用基于断层成像技术的异常面部和牙齿区域/结构,并提供了Tgfbr2在出生后颅面发育中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantification of three-dimensional morphology of craniofacial mineralized tissue defects in Tgfbr2/Osx-Cre mice.

Quantification of three-dimensional morphology of craniofacial mineralized tissue defects in Tgfbr2/Osx-Cre mice.

Quantification of three-dimensional morphology of craniofacial mineralized tissue defects in Tgfbr2/Osx-Cre mice.

Craniofacial morphology is affected by the growth, development, and three-dimensional (3D) relationship of mineralized structures including the skull, jaws, and teeth. Despite fulfilling different purposes within this region, cranial bones and tooth dentin are derived from mesenchymal cells that are affected by perturbations within the TGF-β signaling pathway. TGFBR2 encodes a transmembrane receptor that is part of the canonical, SMAD-dependent TGF-β signaling pathway and mutations within this gene are associated with Loeys-Dietz syndrome, a condition which often presents with craniofacial signs including craniosynostosis and cleft palate. To investigate the role of Tgfbr2 in immature, but committed, mineralized tissue forming cells, we analyzed postnatal craniofacial morphology in mice with conditional Tgfbr2 deletion in Osx-expressing cells. Novel application of a 3D shape-based comparative technique revealed that Tgfbr2 in Osx-expressing cells results in impaired postnatal molar root and anterior cranial growth. These findings support those from studies using similar Tgfbr2 conditional knockout models, highlight the anomalous facial and dental regions/structures using tomographic imaging-based techniques, and provide insight into the role of Tgfbr2 during postnatal craniofacial development.

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来源期刊
Oral Science International
Oral Science International DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
1.00
自引率
20.00%
发文量
43
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