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在200纳米水平下绘制的牛牙根牙本质的晶体结构和元素组成。

Crystallographic texture and elemental composition mapped in bovine root dentin at the 200 nm level.

作者信息

Deymier-Black A C, Veis A, Cai Z, Stock S R

机构信息

Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois.

Department of Cell and Molecular Biology, Northwestern University, Chicago, Illinois.

出版信息

Scanning. 2014 Mar-Apr;36(2):231-40. doi: 10.1002/sca.21093. Epub 2013 Apr 29.

Abstract

The relationship between the mineralization of peritubular dentin (PTD) and intertubular dentin (ITD) is not well understood. Tubules are quite small, diameter ∼2 µm, and this makes the near-tubule region of dentin difficult to study. Here, advanced characterization techniques are applied in a novel way to examine what organic or nanostructural signatures may indicate the end of ITD or the beginning of PTD mineralization. X-ray fluorescence intensity (Ca, P, and Zn) and X-ray diffraction patterns from carbonated apatite (cAp) were mapped around dentintubules at resolutions ten times smaller than the feature size (200 nm pixels), representing a 36% increase in resolution over earlier work. In the near tubule volumes of near-pulp, root dentin, Zn intensity was higher than in ITD remote from the tubules. This increase in Zn(2+), as determined by X-ray absorption near edge structure analysis, may indicate the presence of metalloenzymes or transcription factors important to ITD or PTD mineralization. The profiles of the cAp 00.2 X-ray diffraction rings were fitted with a pseudo-Voigt function, and the spatial and azimuthal distribution of these rings' integrated intensities indicated that the cAp platelets were arranged with their c-axes aligned tangential to the edge of the tubule lumen. This texture was continuous throughout the dentin indicating a lack of structural difference between in the Zn rich near-tubular region and the remote ITD.

摘要

管周牙本质(PTD)和管间牙本质(ITD)矿化之间的关系尚未完全明确。牙本质小管非常细小,直径约为2μm,这使得牙本质的近小管区域难以研究。在此,先进的表征技术以一种新颖的方式应用于研究何种有机或纳米结构特征可能指示ITD矿化的结束或PTD矿化的开始。在牙本质小管周围绘制了X射线荧光强度(钙、磷和锌)以及碳酸化磷灰石(cAp)的X射线衍射图谱,分辨率比特征尺寸(200nm像素)小10倍,相较于早期工作,分辨率提高了36%。在近髓根牙本质的近小管区域,锌的强度高于远离小管的ITD。通过X射线吸收近边结构分析确定,锌离子(Zn²⁺)的这种增加可能表明存在对ITD或PTD矿化重要的金属酶或转录因子。cAp 00.2 X射线衍射环的轮廓用伪沃伊特函数拟合,这些环的积分强度的空间和方位分布表明,cAp血小板的c轴与小管腔边缘相切排列。这种结构在整个牙本质中是连续的,表明富含锌的近小管区域与远端ITD之间不存在结构差异。

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