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Regulation of Dental Enamel Shape and Hardness

机译:牙釉质形状和硬度的调节

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摘要

Epithelial-mesenchymal interactions guide tooth development through its early stages and establish the morphology of the dentin surface upon which enamel will be deposited. Starting with the onset of amelogenesis beneath the future cusp tips, the shape of the enamel layer covering the crown is determined by five growth parameters: the (1) appositional growth rate, (2) duration of appositional growth (at the cusp tip), (3) ameloblast extension rate, (4) duration of ameloblast extension, and (5) spreading rate of appositional termination. Appositional growth occurs at a mineralization front along the ameloblast distal membrane in which amorphous calcium phosphate (ACP) ribbons form and lengthen. The ACP ribbons convert into hydroxyapatite crystallites as the ribbons elongate. Appositional growth involves a secretory cycle that is reflected in a series of incremental lines. A potentially important function of enamel proteins is to ensure alignment of successive mineral increments on the tips of enamel ribbons deposited in the previous cycle, causing the crystallites to lengthen with each cycle. Enamel hardens in a maturation process that involves mineral deposition onto the sides of existing crystallites until they interlock with adjacent crystallites. Neutralization of acidity generated by hydroxyapatite formation is a key part of the mechanism. Here we review the growth parameters that determine the shape of the enamel crown as well as the mechanisms of enamel appositional growth and maturation.
机译:上皮-间充质相互作用引导牙齿发展进入早期阶段,并确定牙本质表面的形态,牙釉质将沉积在该表面上。从未来尖尖下方的釉质生成开始,覆盖牙冠的牙釉质层的形状由五个生长参数确定:(1)附着生长速率,(2)附着生长持续时间(在尖尖), (3)成釉细胞的延伸率,(4)成釉细胞的延伸持续时间,和(5)并置终止的扩散率。定向生长发生在沿成釉细胞远端膜的矿化前沿,非晶态磷酸钙(ACP)带在其中形成并延长。随着带的伸长,ACP带会转变为羟基磷灰石微晶。定向生长涉及分泌周期,这反映在一系列增量线中。牙釉质蛋白的潜在重要功能是确保在上一个循环中沉积的牙釉质带尖端上连续的矿物质增量对齐,从而使微晶随着每个循环而延长。搪瓷在成熟过程中硬化,该过程涉及矿物沉积到现有微晶的侧面,直到它们与相邻微晶互锁。中和由羟基磷灰石形成而产生的酸度是该机理的关键部分。在这里,我们回顾了确定牙釉质冠形状以及牙釉质附着生长和成熟机制的生长参数。

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