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[氟离子与牙釉质中磷灰石的再结晶]

[Fluoride ions and apatite recrystallization of apatite in enamel].

作者信息

Brázda O, Zahradník R

出版信息

Prakt Zubn Lek. 1990 Feb;38(1):1-6.

PMID:2103598
Abstract

The authors discuss the basic process on which the principle of fluoridation in based--i.e. the mutual exchange of F- ions and the OH- group in hydroxyapatite of enamel. Model investigations assessing the energy difference between hydroxyapatite and F- and fluorapatite and the OH- group indicate that fluorapatite tends to release steadily fluoride ions and to change into hydroxyapatite. This tendency, apparently inopportune from the aspects of caries prevention, ensures, however, a permanent low F- level above the enamel surface. The presence of F- ions facilitates recrystalization of apatite in the initial caries stage. The investigation tries to throw new light, from the point of view of theoretical chemistry at a molecular level, on the mechanism of remineralization, one of the most important ways which implements the preventive action of fluoride.

摘要

作者们讨论了氟化物防龋原理所基于的基本过程,即牙釉质羟基磷灰石中氟离子与羟基的相互交换。评估羟基磷灰石与氟磷灰石以及羟基之间能量差异的模型研究表明,氟磷灰石倾向于稳定地释放氟离子并转变为羟基磷灰石。然而,从预防龋齿的角度来看,这种倾向显然并不合适,但它确保了牙釉质表面上方始终保持低氟水平。氟离子的存在有助于在龋齿初期使磷灰石再结晶。该研究试图从理论化学的分子层面角度,对再矿化机制提供新的见解,而再矿化是实现氟化物预防作用的最重要途径之一。

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