Marks S C, Schroeder H E
Department of Cell Biology, University of Massachusetts Medical School, Worcester 01655, USA.
Anat Rec. 1996 Jun;245(2):374-93. doi: 10.1002/(SICI)1097-0185(199606)245:2<374::AID-AR18>3.0.CO;2-M.
The mechanisms of tooth eruption (i.e., the answer to the question of how and why teeth erupt) has been a matter of long historical debate. This review focuses on human and other mammalian teeth with a time- and spacewise limited period of eruption and analyzes recent observations and experimental data on dogs, rats, primates, and humans in a framework of basic biological parameters to formulate a guiding theory of tooth eruption. Acknowledging basic parameters (i.e., that teeth move in three-dimensional space, erupt with varying speed, and arrive at a functional position that in inheritable) eliminates a number of previously held theories and favors those that accommodate basic parameters, such as alveolar bone remodeling in association with root elongation, with possible correction factors in the form of cementum apposition and periodontal ligament formation. We have critically analyzed, summarized, and integrated recent findings associated with preeruptive movements of developing teeth, the intraosseous stage of premolar eruption in dogs, molar eruption in rodents, and premolar and molar eruption in primates. The variable speeds of eruption are particularly important. We conclude with basic principles of tooth eruption--that is, the type of signals generated by the dental follicle proper, the conditions under which teeth are moved and the clinical understanding to be derived from this knowledge.
牙齿萌出的机制(即牙齿如何萌出以及为何萌出这一问题的答案)一直是长期以来历史争论的焦点。本综述聚焦于人类及其他哺乳动物的牙齿,其萌出具有时间和空间上的有限周期,并在基本生物学参数的框架内分析了近期关于狗、大鼠、灵长类动物和人类的观察结果及实验数据,以构建牙齿萌出的指导理论。认识到基本参数(即牙齿在三维空间中移动、以不同速度萌出并到达一个可遗传的功能位置)排除了一些先前存在的理论,并支持那些符合基本参数的理论,例如与牙根伸长相关的牙槽骨重塑,以及以牙骨质附着和牙周韧带形成形式存在的可能校正因素。我们严格分析、总结并整合了与发育中牙齿的萌出前移动、狗的前磨牙萌出的骨内阶段、啮齿动物的磨牙萌出以及灵长类动物的前磨牙和磨牙萌出相关的近期研究结果。萌出速度的变化尤为重要。我们以牙齿萌出的基本原理作为总结——即牙囊自身产生的信号类型、牙齿移动的条件以及从这一知识中获得的临床认识。