牙根发育和动态平衡在萌牙和萌牙后的运动。

En Hui Yao, Jia Hui Du, Xin Quan Jiang
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引用次数: 0

摘要

萌牙是发育中的牙齿在咬合平面上移动到其功能位置的过程,它与牙根的形成同时发生,牙根是牙齿通过牙周韧带固定在周围牙槽骨上的关键组成部分。出牙后的牙齿运动,一旦咬合完成,牙齿在牙槽骨内保持排列,通过牙周组织重塑促进正常的咬合功能。牙齿过度萌出是一个临床意义重大的问题,然而,咬合力的改变转化为牙周重塑的确切机制在很大程度上仍未被探索。在这篇综述中,作者旨在概述在牙齿萌牙和萌牙后运动过程中控制牙根形成和动态平衡的潜在机制的最新进展。基于各种小鼠模型的最新发现,我们概述了牙根形成过程中的协同细胞间相互作用,包括Hertwig上皮根鞘、牙乳头和牙毛囊。此外,我们总结了潜在的机制,主要是鉴于牙周组织对垂直机械刺激的反应。因此,研究出牙过程中发育过程的精确调控机制将对出牙缺陷和过出牙的疾病治疗提供指导。
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Tooth Root Development and Homeostasis during Eruptive and Post-eruptive Movement.

Tooth eruption is the process whereby the developing tooth moves to its functional position in the occlusal plane and it occurs concomitantly with formation of the tooth root, which is a critical component of the tooth anchored to surrounding alveolar bone through the periodontal ligament. Post-eruptive tooth movement ensues that once occlusion is achieved, the teeth maintain their alignment within the alveolar bone to facilitate proper bite function through periodontium remodelling. Tooth overeruption presents a clinically significant issue, yet the precise mechanisms by which alterations in occlusal forces are translated into periodontal remodelling remain largely unexplored. In this review, the present authors aim to outline the latest progress on the potential mechanisms governing tooth root formation and homeostasis during tooth eruptive and post-eruptive movement. Based on recent findings using various mouse models, we provide an overview of the collaborative intercellular interaction during root formation, including Hertwig's epithelial root sheath, dental papilla and dental follicle. Moreover, we summarise the potential mechanism underlying post-eruptive movement mainly in view of the responses of periodontal tissues to vertical mechanical stimuli. In sum, the precise regulatory mechanisms during tooth eruption throughout life will shed light on disease treatment of tooth eruption defects and overeruption.

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