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含镁、氟和碳酸盐的非均相磷灰石的性质

Properties of heterogeneous apatites containing magnesium, fluoride, and carbonate.

作者信息

Okazaki M, LeGeros R Z

机构信息

Osaka University Faculty of Dentistry, Japan.

出版信息

Adv Dent Res. 1996 Nov;10(2):252-9. doi: 10.1177/08959374960100022201.

Abstract

Biological apatites present in the mineral phases of normal and pathological calcifications contain magnesium, Mg, and carbonate, CO3. As a consequence of fluctuations in the composition of the micro-environment, these apatites may sometimes form by heterogeneous precipitation. The purpose of this study was to investigate the properties of (Mg, CO3)-apatites formed heterogeneously in the presence of fluoride, F. Two types of fluoridated (Mg, CO3)-apatites formed from solutions with low and high levels of Mg were prepared at 80 degrees C, pH 7.4. We prepared FMgCO3-MgCO3AP (Type 1) by adding the F-containing solution to those containing calcium, Mg, and phosphate ions during the first half of the precipitation period. We prepared MgCO3-FMgCO3Ap (Type 2) by adding the F-containing solution during the final half of the period. The apatites were analyzed by x-ray diffraction (XRD), infrared absorption spectroscopy, and scanning electron microscopy (SEM). SEM and XRD analyses showed evidence of mixed crystals in the heterogeneous apatites. The presence of Mg inhibits, while F promotes, apatite crystal growth. In addition, Mg incorporation increased with increasing fluoride concentration. The extent of dissolution in acid buffer of both types of heterogeneous apatites increased with Mg: Type 1 > Type 2. These results suggest that the crystal and dissolution properties of heterogeneous fluoridated (Mg, CO3)-apatites are greatly affected by the mode of F incorporation and Mg concentrations in the environment.

摘要

正常和病理性钙化的矿物相中存在的生物磷灰石含有镁(Mg)和碳酸根(CO3)。由于微环境组成的波动,这些磷灰石有时可能通过非均相沉淀形成。本研究的目的是研究在氟(F)存在下非均相形成的(Mg,CO3)-磷灰石的性质。在80℃、pH 7.4条件下,由低镁和高镁溶液制备了两种类型的氟化(Mg,CO3)-磷灰石。在沉淀期的前半段,通过向含有钙、镁和磷酸根离子的溶液中加入含氟溶液来制备FMgCO3-MgCO3AP(1型)。在沉淀期的后半段加入含氟溶液来制备MgCO3-FMgCO3Ap(2型)。通过X射线衍射(XRD)、红外吸收光谱和扫描电子显微镜(SEM)对磷灰石进行分析。SEM和XRD分析表明非均相磷灰石中存在混晶。镁的存在抑制磷灰石晶体生长,而氟促进磷灰石晶体生长。此外,随着氟化物浓度的增加,镁的掺入量增加。两种类型的非均相磷灰石在酸性缓冲液中的溶解程度随镁含量增加而增加:1型>2型。这些结果表明,非均相氟化(Mg,CO3)-磷灰石的晶体和溶解性质受氟掺入方式和环境中镁浓度的极大影响。

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