生物磷灰石晶体结构特征及特性观察。2. 人牙釉质晶体超微结构的观察。

T Ichijo, Y Yamashita, T Terashima
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引用次数: 0

摘要

在一系列研究生物晶体结构特征的研究中,我们使用电子显微镜,通过晶体的横切面和纵切面,以近原子分辨率检查了人类牙釉质晶体的超微结构。本研究使用的材料是新拔出的恒磨牙的中间层无龋牙釉质。采用常规方法将牙釉质小立方体固定在戊二醛和四氧化二锇中,并包埋在环氧树脂中。超薄切片用金刚石刀切割,不脱钙。切片用日立H-500和H-700型透射电子显微镜进行检测,工作电压为125-200 kV。每个晶体在初始放大30万倍和最终放大1000万倍以上时被观察到。利用这种方法,作者已经能够在珐琅晶体的横截面和纵截面上显示羟基磷灰石的结构,并从c轴向下观察到单位细胞的基本六角形图案。作者真诚地相信,本报告中显示的电子显微照片是利用切片从人类牙釉质中获得的羟基磷灰石晶体的第一张原子图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observations on the structural features and characteristics of biological apatite crystals. 2. Observation on the ultrastructure of human enamel crystals.

In a series of studies to investigate the structural features of biological crystals, using an electron microscope, we examined the ultrastructure of human enamel crystals at near atomic resolution through the cross and longitudinal sections of the crystals. The materials used for this study were the middle layer of the noncarious enamel from freshly extracted human erupted permanent molars. The small cubes of the enamel were fixed in glutaraldehyde and osmium tetroxide and embedded in epoxy resin using the routine methods. The ultrathin sections were cut with a diamond knife without decalcification. The sections were examined with HITACHI H-500 and H-700 types of transmission electron microscopes operated at 125-200 kV. Each crystal was observed at the initial magnification of 300,000 times and at the final magnification of 10,000,000 times and over. Using this approach, the authors have been able to show the configuration of the hydroxyapatite in the cross and longitudinal sections of the enamel crystals and observe the basic hexagonal pattern of the unit cell viewed down the c-axis. The authors sincerely believe that the electron micrograph shown in this report is the first atomic image to be obtained from a hydroxyapatite crystal from the human enamel, using the sections.

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