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牙发育过程中的上皮组织发生。

Epithelial histogenesis during tooth development.

机构信息

INSERM UMR595, Faculty of Medicine, 11 rue Humann, 67085 Strasbourg Cedex, France.

出版信息

Arch Oral Biol. 2009 Dec;54 Suppl 1:S25-33. doi: 10.1016/j.archoralbio.2008.05.019. Epub 2008 Jul 26.


DOI:10.1016/j.archoralbio.2008.05.019
PMID:18656852
Abstract

This paper reviews the current understanding of the progressive changes mediating dental epithelial histogenesis as a basis for future collaborative studies. Tooth development involves morphogenesis, epithelial histogenesis and cell differentiation. The consecutive morphological stages of lamina, bud, cap and bell are also characterized by changes in epithelial histogenesis. Differential cell proliferation rates, apoptosis, and alterations in adhesion and shape lead to the positioning of groups of cells with different functions. During tooth histo-morphogenesis changes occur in basement membrane composition, expression of signalling molecules and the localization of cell surface components. Cell positional identity may be related to cell history. Another important parameter is cell plasticity. Independently of signalling molecules, which play a major role in inducing or modulating specific steps, cell-cell and cell-matrix interactions regulate the plasticity/rigidity of particular domains of the enamel organ. This involves specifying in space the differential growth and influences the progressive tooth morphogenesis by shaping the epithelial-mesenchymal junction. Deposition of a mineralized matrix determines the final shape of the crown. All data reviewed in this paper were investigated in the mouse.

摘要

本文综述了目前对牙齿上皮组织发生中介导渐进性变化的认识,以期为未来的合作研究提供基础。牙齿发育涉及形态发生、上皮组织发生和细胞分化。板层、芽、帽和钟状连续的形态发生阶段也表现出上皮组织发生的变化。不同的细胞增殖率、细胞凋亡、黏附和形态改变导致具有不同功能的细胞群的定位。在牙齿组织形态发生过程中,基底膜组成、信号分子的表达和细胞表面成分的定位发生变化。细胞位置的特征可能与细胞的历史有关。另一个重要参数是细胞的可塑性。细胞-细胞和细胞-基质的相互作用独立于信号分子(信号分子在诱导或调节特定步骤中起着主要作用),调节釉质器官特定区域的可塑性/刚性。这涉及到在空间上指定差异生长,并通过塑造上皮-间充质连接来影响牙齿的渐进性形态发生。矿化基质的沉积决定了牙冠的最终形状。本文综述的所有数据均在小鼠中进行了研究。

相似文献

[1]
Epithelial histogenesis during tooth development.

Arch Oral Biol. 2008-7-26

[2]
Epithelial-mesenchymal interactions in tooth morphogenesis: the roles of extracellular matrix, growth factors, and cell surface receptors.

J Craniofac Genet Dev Biol. 1991

[3]
Molecular changes during determination and differentiation of the dental mesenchymal cell lineage.

J Biol Buccale. 1990-9

[4]
Dental epithelial histo-morphogenesis in the mouse: positional information versus cell history.

Arch Oral Biol. 2005-2

[5]
Apoptosis distribution in the first molar tooth germ of the field vole (Microtus agrestis).

Tissue Cell. 2004-10

[6]
Cell-matrix interactions in tooth development.

Int J Dev Biol. 1989-3

[7]
Associations of FGF-3 and FGF-10 with signaling networks regulating tooth morphogenesis.

Dev Dyn. 2000-11

[8]
[Interactions between the extracellular matrix and the cell surface determine tooth morphogenesis and the cellular differentiation of the dental mesenchyme].

Ontogenez. 1989

[9]
Expression patterns of bone morphogenetic proteins (Bmps) in the developing mouse tooth suggest roles in morphogenesis and cell differentiation.

Dev Dyn. 1997-12

[10]
Molecular mechanisms of cell and tissue interactions during early tooth development.

Anat Rec. 1996-6

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[2]
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J Oral Maxillofac Pathol. 2023

[3]
Developmental roles of glomerular epithelial protein-1 in mice molar morphogenesis.

Cell Tissue Res. 2024-1

[4]
Dynamic patterns of histone lactylation during early tooth development in mice.

J Mol Histol. 2023-12

[5]
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Genes (Basel). 2022-6-2

[6]
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[7]
Hypoxia-Responsive Oxygen Nanobubbles for Tissues-Targeted Delivery in Developing Tooth Germs.

Front Cell Dev Biol. 2021-2-15

[8]
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Rom J Morphol Embryol. 2020

[9]
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[10]
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