Hayashi Y
Department of Conservative Dentistry, Faculty of Dentistry, Kyushu University, Fukuoka, Japan.
Scanning Microsc. 1995 Jun;9(2):419-25; discussion 425-7.
Dental calculus may grow on the denture surface. In order to demonstrate the mechanism of deposition, the interface between calculus and denture resin was investigated using a high resolution electron microscope. Ultrathin sections were also used for electron diffraction of selected areas to reveal any mineral phase. The mineral layers without mineralized bacteria adjacent to the denture surface revealed a marked variation in thickness and crystal shape. Three types of crystal shape were observed at the junction: needle-like, rod-like and plate-like crystals. High resolution electron microscopy (HREM) showed that both rod-like and plate-like crystals were an aggregation of fine crystallites. The lattice fringes of the fine crystallites were observed among the near atomic structures of resin polymer at the interface in all three types of crystals. The electron diffraction patterns of selected areas revealed that needle-like and rod-like crystals were composed of hydroxyapatite (OH-AP), while plate-like crystals were composed of a mixture of OH-AP and whitlockite. These findings indicate that, after saliva penetrates through the acrylic resin, calcium and phosphate ions in the saliva are trapped in the molecular chains of the resin polymer, while the local ion concentration then increases to reach supersaturation, whereas a spontaneous precipitation would occur at the superficial layer of the denture resin. Furthermore, a thin intermediate layer of crystallites might be indispensable for the scaffolding process in the calculus formation on the denture surface.
牙结石可能会在假牙表面生长。为了阐明其沉积机制,使用高分辨率电子显微镜对牙结石与假牙树脂之间的界面进行了研究。超薄切片也用于选定区域的电子衍射,以揭示任何矿物相。假牙表面附近无矿化细菌的矿质层显示出厚度和晶体形状的显著变化。在交界处观察到三种晶体形状:针状、棒状和板状晶体。高分辨率电子显微镜(HREM)显示,棒状和板状晶体都是微晶的聚集体。在所有三种晶体的界面处,在树脂聚合物的近原子结构中都观察到了微晶的晶格条纹。选定区域的电子衍射图谱显示,针状和棒状晶体由羟基磷灰石(OH-AP)组成,而板状晶体由OH-AP和白磷钙矿的混合物组成。这些发现表明,唾液穿透丙烯酸树脂后,唾液中的钙和磷酸根离子被困在树脂聚合物的分子链中,而局部离子浓度随后增加至过饱和,进而在假牙树脂的表层会发生自发沉淀。此外,微晶的薄中间层对于假牙表面牙结石形成过程中的支架作用可能是必不可少的。