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The Impact of Fluoride on Ameloblasts and the Mechanisms of Enamel Fluorosis

机译:氟化物对成釉细胞的影响及釉质氟中毒的机制

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摘要

Intake of excess amounts of fluoride during tooth development cause enamel fluorosis, a developmental disturbance that makes enamel more porous. In mild fluorosis, there are white opaque striations across the enamel surface, whereas in more severe cases, the porous regions increase in size, with enamel pitting, and secondary discoloration of the enamel surface. The effects of fluoride on enamel formation suggest that fluoride affects the enamel-forming cells, the ameloblasts. Studies investigating the effects of fluoride on ameloblasts and the mechanisms of fluorosis are based on in vitro cultures as well as animal models. The use of these model systems requires a biologically relevant fluoride dose, and must be carefully interpreted in relation to human tooth formation. Based on these studies, we propose that fluoride can directly affect the ameloblasts, particularly at high fluoride levels, while at lower fluoride levels, the ameloblasts may respond to local effects of fluoride on the mineralizing matrix. A new working model is presented, focused on the assumption that fluoride increases the rate of mineral formation, resulting in a greater release of protons into the forming enamel matrix.
机译:牙齿发育过程中摄入过量的氟化物会引起牙釉质氟中毒,这是一种发育障碍,使牙釉质更加多孔。在轻度的氟中毒时,釉质表面有白色的不透明条纹,而在更严重的情况下,多孔区域的尺寸会增大,并带有釉质点蚀和釉质表面的二次变色现象。氟化物对牙釉质形成的影响表明,氟化物会影响牙釉质形成细胞成釉细胞。研究氟化物对成釉细胞的影响和氟中毒机理的研究均基于体外培养以及动物模型。这些模型系统的使用需要生物学上相关的氟化物剂量,并且必须仔细解释与人牙齿的形成有关。基于这些研究,我们建议氟化物可以直接影响成釉细胞,特别是在高氟化物水平下,而在较低氟化物水平下,成釉细胞可能对氟化物在矿化基质上的局部作用作出反应。提出了一个新的工作模型,其重点是以下假设:氟化物会增加矿物质的形成速度,从而导致质子更多地释放到形成的釉质基质中。

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