牙齿萌出的细胞、分子和遗传决定因素。

G. Wise, S. Frazier-Bowers, R. D'Souza
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引用次数: 353

摘要

牙齿萌出是一个复杂而受严格调控的过程,涉及到牙齿器官的细胞和周围的牙槽。单个核细胞(破骨细胞前体)必须在牙疹发作前被招募到牙滤泡中。这些细胞依次融合形成破骨细胞,这些破骨细胞吸收牙槽骨,形成牙齿脱离其骨隐窝的出牙通道。一些可能参与出疹信号级联反应的分子已经在空白小鼠、骨质疏松啮齿动物、注射假定的出疹分子和培养的牙滤泡细胞的研究中被提出。特别是,单个核细胞募集到卵泡可能需要集落刺激因子-1 (CSF-1)和/或单核细胞趋化蛋白-1 (MCP-1)。破骨细胞发生是骨吸收所必需的,可能涉及抑制卵泡中骨保护素的转录和合成,以及增强邻近牙槽骨和/或卵泡中NF κ B配体受体激活剂(RANKL)。由靠近卵泡的星状网产生的甲状旁腺激素相关蛋白和白细胞介素-1 α发出的旁分泌信号也可能在调节爆发中发挥作用。成骨细胞也可能影响爆发过程,最重要的生理作用可能是在爆发部位,通过RANKL/OPG通路的信号传导,在破骨细胞的形成中发挥作用。迄今为止的证据支持成骨细胞特异性转录因子Cbfa1 (Runx2)在调节牙齿萌牙的分子事件中的作用。牙滤泡细胞也高水平表达Cbfa1。这篇综述总结了几个人类条件的讨论,导致失败或延迟牙齿的爆发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cellular, molecular, and genetic determinants of tooth eruption.
Tooth eruption is a complex and tightly regulated process that involves cells of the tooth organ and the surrounding alveolus. Mononuclear cells (osteoclast precursors) must be recruited into the dental follicle prior to the onset of eruption. These cells, in turn, fuse to form osteoclasts that resorb alveolar bone, forming an eruption pathway for the tooth to exit its bony crypt. Some of the molecules possibly involved in the signaling cascades of eruption have been proposed in studies from null mice, osteopetrotic rodents, injections of putative eruption molecules, and cultured dental follicle cells. In particular, recruitment of the mononuclear cells to the follicle may require colony-stimulating factor-one (CSF-1) and/or monocyte chemotactic protein-1 (MCP-1). Osteoclastogenesis is needed for the bone resorption and may involve inhibition of osteoprotegerin transcription and synthesis in the follicle, as well as enhancement of receptor activator of NF kappa B ligand (RANKL), in the adjacent alveolar bone and/or in the follicle. Paracrine signaling by parathyroid-hormone-related protein and interleukin -1 alpha, produced in the stellate reticulum adjacent to the follicle, may also play a role in regulating eruption. Osteoblasts might also influence the process of eruption, the most important physiologic role likely being at the eruptive site, in the formation of osteoclasts through signaling via the RANKL/OPG pathway. Evidence thus far supports a role for an osteoblast-specific transcription factor, Cbfa1 (Runx2), in molecular events that regulate tooth eruption. Cbfa1 is also expressed at high levels by the dental follicle cells. This review concludes with a discussion of the several human conditions that result in a failure of or delay in tooth eruption.
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