The role of growth factors in determination and differentiation of the odontoblastic cell lineage.

I Thesleff, A Vaahtokari
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Abstract

In developing teeth the differentiation of odontoblasts is triggered by the enamel epithelium and is tightly coupled with morphogenesis. There is substantial evidence that even in mature teeth the cells of the dental pulp retain the capability to differentiate into odontoblasts under suitable conditions. However, cells from other than the dental mesenchymal cell lineage apparently do not possess this potential. Thus, it is conceivable that the dental mesenchymal cells acquire cell type-specific potential to differentiate into odontoblasts during their developmental history. Therefore, the understanding of the mechanisms which regulate the terminal differentiation of odontoblasts requires that the molecular changes and mechanisms that are associated with their progressive determination be clarified. It can be speculated that there are key transition points in the developmental sequence during which the mesenchymal cells acquire new levels of differentiation. These include, (1) the condensation of the neural crest-derived mesenchymal cells around the epithelial bud, (2) their entrance into the dental papilla lineage during cap stage, and (3) the differentiation of the cells underlying the enamel epithelium into odontoblasts during bell stage. The transition points are conceivably characterized by amplification or onset of expression of new sets of genes encoding transcription factors, growth factors as well as structural proteins. We have applied in situ hybridization for localization of the expression of two growth factors during mouse molar morphogenesis: transforming growth factor beta 1 (TGF beta 1) and int-2 (a proto-oncogene coding for a fibroblast growth factor-related protein). During bud stage, expression of TGF beta 1 was first detected in the epithelium and shortly thereafter in the condensed dental mesenchyme. The expression was weak during early bell stage but a high number of transcripts appeared in secretory odontoblasts as well as in presecretory ameloblasts. int-2 mRNA appeared in the dental papilla mesenchyme at the onset of cap stage, persisted in the cuspal mesenchyme during bell stage and was lost upon completion of morphogenesis. Our findings suggest that cell type-specific expression of TGF beta 1 and int-2 is associated with phenotypic properties of the odontoblastic cell lineage. For instance, TGF beta 1 may regulate matrix deposition by increasing tenascin and syndecan expression in the condensed dental mesenchyme and by controlling dentin matrix deposition by odontoblasts. TGF beta 1 and int-2 may also be involved in signalling between the epithelial and mesenchymal tissues and in regulation of gene expression at the transition points of the developmental sequence that leads to the differentiation of odontoblasts.

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生长因子在成牙细胞系的决定和分化中的作用。
在牙齿发育过程中,成牙细胞的分化是由牙釉质上皮触发的,并与形态发生紧密结合。有大量证据表明,即使在成熟的牙齿中,牙髓细胞在适当的条件下仍保留分化成成牙髓细胞的能力。然而,来自牙齿间充质细胞系以外的细胞显然不具备这种潜能。因此,可以想象,牙间充质细胞在发育过程中获得了向成牙细胞分化的细胞类型特异性潜能。因此,要理解成牙细胞终末分化的调控机制,就需要弄清与成牙细胞终末分化的进展决定相关的分子变化和机制。可以推测,在发育序列中存在关键的过渡点,其间间充质细胞获得新的分化水平。这包括:(1)神经嵴来源的间充质细胞在上皮芽周围凝结,(2)帽期它们进入牙乳头谱系,(3)钟期牙釉质上皮下的细胞分化为成牙细胞。可以想象,过渡点的特点是扩增或开始表达编码转录因子、生长因子和结构蛋白的新基因集。我们应用原位杂交技术定位了小鼠臼齿形态发生过程中两种生长因子的表达:转化生长因子β 1 (TGF β 1)和int-2(一种编码成纤维细胞生长因子相关蛋白的原癌基因)。在芽期,TGF β 1首先在上皮中表达,随后在牙凝聚间质中表达。在钟期早期表达较弱,但在分泌性成牙细胞和分泌前成釉细胞中出现大量转录本。int-2 mRNA在牙冠期开始时出现在牙乳头间质中,在钟形期持续存在于牙尖间质中,在形态发生完成时消失。我们的研究结果表明,细胞类型特异性表达TGF β 1和int-2与成牙细胞谱系的表型特性有关。例如,TGF β 1可能通过增加凝聚牙间质中tenascin和syndecan的表达,以及通过控制成牙细胞形成牙本质基质来调节基质沉积。TGF β 1和int-2也可能参与上皮和间充质组织之间的信号传导,参与调控成牙细胞分化发育序列过渡点的基因表达。
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Function of masticatory system after surgical-orthodontic correction of maxillomandibular discrepancies. The Finnish Family Competence Study: young fathers' views on health education. Oral health status in a Finnish village. Trigeminal foraminal patterns in "skeletal" Class II and Class III adults--a radiocephalometric study. Comparison of dental arch dimensions in children from southern and northern Finland.
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