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潜伏转化生长因子β结合蛋白3突变小鼠的牙釉质和牙齿异常

Enamel and dental anomalies in latent-transforming growth factor beta-binding protein 3 mutant mice.

作者信息

Morkmued Supawich, Hemmerle Joseph, Mathieu Eric, Laugel-Haushalter Virginie, Dabovic Branka, Rifkin Daniel B, Dollé Pascal, Niederreither Karen, Bloch-Zupan Agnès

机构信息

Faculté de Chirurgie Dentaire, Université de Strasbourg, Strasbourg, France.

CNRS UMR_7104, INSERM U964, Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), Centre Européen de Recherche en Biologie et en Médecine (CERBM), Université de Strasbourg, Illkirch, France.

出版信息

Eur J Oral Sci. 2017 Feb;125(1):8-17. doi: 10.1111/eos.12328.

DOI:10.1111/eos.12328
PMID:28084688
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5260799/
Abstract

Latent-transforming growth factor beta-binding protein 3 (LTBP-3) is important for craniofacial morphogenesis and hard tissue mineralization, as it is essential for activation of transforming growth factor-β (TGF-β). To investigate the role of LTBP-3 in tooth formation we performed micro-computed tomography (micro-CT), histology, and scanning electron microscopy analyses of adult Ltbp3-/- mice. The Ltbp3-/- mutants presented with unique craniofacial malformations and reductions in enamel formation that began at the matrix formation stage. Organization of maturation-stage ameloblasts was severely disrupted. The lateral side of the incisor was affected most. Reduced enamel mineralization, modification of the enamel prism pattern, and enamel nodules were observed throughout the incisors, as revealed by scanning electron microscopy. Molar roots had internal irregular bulbous-like formations. The cementum thickness was reduced, and microscopic dentinal tubules showed minor nanostructural changes. Thus, LTBP-3 is required for ameloblast differentiation and for the formation of decussating enamel prisms, to prevent enamel nodule formation, and for proper root morphogenesis. Also, and consistent with the role of TGF-β signaling during mineralization, almost all craniofacial bone components were affected in Ltbp3-/- mice, especially those involving the upper jaw and snout. This mouse model demonstrates phenotypic overlap with Verloes Bourguignon syndrome, also caused by mutation of LTBP3, which is hallmarked by craniofacial anomalies and amelogenesis imperfecta phenotypes.

摘要

潜伏转化生长因子β结合蛋白3(LTBP-3)对颅面形态发生和硬组织矿化很重要,因为它对转化生长因子-β(TGF-β)的激活至关重要。为了研究LTBP-3在牙齿形成中的作用,我们对成年Ltbp3-/-小鼠进行了显微计算机断层扫描(micro-CT)、组织学和扫描电子显微镜分析。Ltbp3-/-突变体表现出独特的颅面畸形,釉质形成减少,这种情况始于基质形成阶段。成熟阶段成釉细胞的组织受到严重破坏。切牙的外侧受影响最大。扫描电子显微镜显示,整个切牙均观察到釉质矿化减少、釉柱模式改变和釉质结节。磨牙根有内部不规则的球茎状结构。牙骨质厚度减小,显微镜下牙本质小管显示出微小的纳米结构变化。因此,LTBP-3是成釉细胞分化、交叉釉柱形成、防止釉质结节形成以及正常牙根形态发生所必需的。此外,与TGF-β信号在矿化过程中的作用一致,Ltbp3-/-小鼠几乎所有颅面骨成分都受到影响,尤其是涉及上颌和口鼻部的成分。这个小鼠模型表现出与Verloes Bourguignon综合征的表型重叠,该综合征也是由LTBP3突变引起的,其特征为颅面异常和釉质发育不全表型。

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