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斑马鱼sp7突变体表现出牙齿循环,与牙齿的附着、萌出无关,且牙齿分化不良。

Zebrafish sp7 mutants show tooth cycling independent of attachment, eruption and poor differentiation of teeth.

作者信息

Kague E, Witten P E, Soenens M, Campos C L, Lubiana T, Fisher S, Hammond C, Brown K Robson, Passos-Bueno M R, Huysseune A

机构信息

Department of Physiology, Pharmacology and Neuroscience, University of Bristol, BS8 1TD, United Kingdom; Centro de Pesquisa sobre o Genoma Humano e Células Tronco, Departamento de Genética e Biologia Evolutiva, Instituto de Biociências, Universidade de São Paulo, Brazil.

Evolutionary Developmental Biology, Ghent University, Belgium.

出版信息

Dev Biol. 2018 Mar 15;435(2):176-184. doi: 10.1016/j.ydbio.2018.01.021. Epub 2018 Feb 2.

Abstract

The capacity to fully replace teeth continuously makes zebrafish an attractive model to explore regeneration and tooth development. The requirement of attachment bone for the appearance of replacement teeth has been hypothesized but not yet investigated. The transcription factor sp7 (osterix) is known in mammals to play an important role during odontoblast differentiation and root formation. Here we study tooth replacement in the absence of attachment bone using sp7 zebrafish mutants. We analysed the pattern of tooth replacement at different stages of development and demonstrated that in zebrafish lacking sp7, attachment bone is never present, independent of the stage of tooth development or fish age, yet replacement is not interrupted. Without bone of attachment we observed abnormal orientation of teeth, and abnormal connection of pulp cavities of predecessor and replacement teeth. Mutants lacking sp7 show arrested dentinogenesis, with non-polarization of odontoblasts and only a thin layer of dentin deposited. Osteoclast activity was observed in sp7 mutants; due to the lack of bone of attachment, remodelling was diminished but nevertheless present along the pharyngeal bone. We conclude that tooth replacement is ongoing in the sp7 mutant despite poor differentiation and defective attachment. Without bone of attachment tooth orientation and pulp organization are compromised.

摘要

能够持续完全替换牙齿使得斑马鱼成为探索再生和牙齿发育的有吸引力的模型。已有假说认为替换牙的出现需要附着骨,但尚未进行研究。转录因子sp7(osterix)在哺乳动物中已知在成牙本质细胞分化和牙根形成过程中起重要作用。在此,我们使用sp7斑马鱼突变体研究在没有附着骨的情况下的牙齿替换。我们分析了不同发育阶段的牙齿替换模式,并证明在缺乏sp7的斑马鱼中,无论牙齿发育阶段或鱼的年龄如何,都不会出现附着骨,但替换过程并未中断。在没有附着骨的情况下,我们观察到牙齿方向异常,以及前牙和替换牙的牙髓腔连接异常。缺乏sp7的突变体显示牙本质生成停滞,成牙本质细胞无极化,仅沉积了一层薄薄的牙本质。在sp7突变体中观察到破骨细胞活性;由于缺乏附着骨,重塑减少,但仍沿咽骨存在。我们得出结论,尽管分化不良和附着缺陷,sp7突变体中的牙齿替换仍在进行。没有附着骨,牙齿方向和牙髓组织会受到损害。

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