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牙釉质和合成磷灰石中的镁与碳酸盐。

Magnesium and carbonate in enamel and synthetic apatites.

作者信息

LeGeros R Z, Sakae T, Bautista C, Retino M, LeGeros J P

机构信息

New York University College of Dentistry, New York 10010, USA.

出版信息

Adv Dent Res. 1996 Nov;10(2):225-31. doi: 10.1177/08959374960100021801.

Abstract

This study aimed to: determine the Mg and CO3 distribution in the outer (surface), middle, and inner (closest to the enamel-dentin junction, EDJ) layers of human enamel; and determine the factors affecting the incorporation of Mg into synthetic apatites and the consequence of such incorporation on the properties of the apatites. Results demonstrated that the concentrations of Mg, CO3, and organic components increased from the surface to the inner layers close to the EDJ and a difference in crystallinity from the outer to the inner layers. Initial results indicated that the extent of dissolution of the inner layer enamel is greater than that in the outer or surface enamel. Results on synthetic apatites showed the following: (1) Limited Mg incorporation into apatite was dependent on solution [Mg/Ca] molar ratio, temperature, pH, and the presence of CO3 or fluoride (F); (2) incorporation of Mg causes reduction in crystallinity and an increase in the extent of dissolution of the apatite; (3) the negative effect of Mg on the properties of apatites is synergistic to that of CO3 and antagonistic to that of F; and (4) exposure to acid of Mg-containing apatites causes the dissolution of Mg-rich apatite and precipitation of Mg-poor apatite. The observed decrease in the [Mg/Ca] of enamel and synthetic apatites after acid exposure may explain the observed 'preferential loss' of Mg and CO3 in the initial stages of caries.

摘要

本研究旨在

确定镁(Mg)和碳酸根(CO3)在人牙釉质外层(表面)、中层和内层(最接近釉牙本质界,EDJ)的分布;确定影响Mg掺入合成磷灰石的因素以及这种掺入对磷灰石性能的影响。结果表明,Mg、CO3和有机成分的浓度从表面到靠近EDJ的内层逐渐增加,且外层到内层的结晶度存在差异。初步结果表明,内层牙釉质的溶解程度大于外层或表面牙釉质。合成磷灰石的结果如下:(1)Mg掺入磷灰石的量有限取决于溶液的[Mg/Ca]摩尔比、温度、pH值以及CO3或氟(F)的存在;(2)Mg的掺入导致磷灰石结晶度降低和溶解程度增加;(3)Mg对磷灰石性能的负面影响与CO3的影响具有协同作用,与F的影响具有拮抗作用;(4)含Mg的磷灰石暴露于酸中会导致富Mg磷灰石溶解和贫Mg磷灰石沉淀。酸暴露后牙釉质和合成磷灰石中观察到的[Mg/Ca]降低可能解释了在龋齿初期观察到的Mg和CO3的“优先损失”。

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