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Crystallographic texture and mineral concentration quantification of developing and mature human incisal enamel

机译:发育成熟的人类切牙釉质的晶体学纹理和矿物质浓度定量

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摘要

For human dental enamel, what is the precise mineralization progression spatially and the precise timing of mineralization? This is an important question in the fundamental understanding of matrix-mediated biomineralization events, but in particular because we can use our understanding of this natural tissue growth in humans to develop biomimetic approaches to repair and replace lost enamel tissue. It is important to understand human tissues in particular since different species have quite distinct spatial and temporal progression of mineralization. In this study, five human central incisors at different stages of enamel maturation/mineralization were spatially mapped using synchrotron X-ray diffraction and X-ray microtomography techniques. From the earliest developmental stage, two crystallite-orientation populations coexist with angular separations between the crystallite populations of approximately 40° varying as a function of position within the tooth crown. In general, one population had significantly lower texture magnitude and contributed a higher percentage to the overall crystalline structure, compared to the other population which contributed only 20–30% but had significantly higher texture magnitude. This quantitative analysis allows us to understand the complex and co-operative structure-function relationship between two populations of crystallites within human enamel. There was an increase in the mineral concentration from the enamel-dentin junction peripherally and from the incisal tip cervically as a function of maturation time. Quantitative backscattered-electron analyses showed that mineralization of prism cores precedes that of prism boundaries. These results provide new insights into the precise understanding of the natural growth of human enamel.
机译:对于人类牙釉质来说,精确的矿化空间空间和精确的矿化时间是什么?这是对基质介导的生物矿化事件的基本理解中的一个重要问题,但特别是因为我们可以利用对人类自然组织生长的理解来开发仿生方法来修复和替换丢失的牙釉质组织。特别重要的是要了解人体组织,因为不同物种的矿化在空间和时间上有很大不同。在这项研究中,使用同步加速器X射线衍射和X射线显微断层摄影技术,对牙釉质成熟/矿化不同阶段的五个人类中央切牙进行了空间定位。从最早的发展阶段开始,两个微晶取向族共存,并且随着齿冠内位置的变化,微晶族之间的角度间隔大约为40°。总的来说,一个种群的结构强度显着降低,对总体晶体结构的贡献较高,而另一种群的结构强度仅占20%至30%,但结构强度显着较高。这种定量分析使我们能够了解人类牙釉质中两个微晶群之间的复杂且合作的结构-功能关系。牙釉质-牙本质交界处和宫颈切牙尖端的矿物质浓度随成熟时间的增加而增加。定量反向散射电子分析表明,棱镜芯的矿化作用先于棱镜边界的矿化作用。这些结果为对人类牙釉质自然生长的精确理解提供了新的见解。

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