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人脱细胞牙骨质的渐进线——SEM 分析的新见解。

Incremental lines in human acellular tooth cementum - New insights by SEM analysis.

机构信息

Danube Private University, Steiner Landstrasse 124, 3500 Krems-Stein, Austria.

Danube Private University, Steiner Landstrasse 124, 3500 Krems-Stein, Austria; Institute of Chemical Technology of Inorganic Materials, Johannes Kepler University Linz, Altenberger Straße 69, 4040 Linz, Austria.

出版信息

Ann Anat. 2022 Aug;243:151933. doi: 10.1016/j.aanat.2022.151933. Epub 2022 Mar 17.

Abstract

BACKGROUND

Tooth cementum covers the surface of the root dentine and is produced and laid down in thin layers continuously throughout life. Functionally, different types of tooth cementum can be distinguished, which can be roughly divided into acellular (primary cementum) and cellular (secondary cementum) forms. One main type is acellular extrinsic fibre cementum (AEFC), which covers the cervical and middle third of the root. Light microscopic examinations of transverse sections of AEFC show lamellar patterns of alternating light and dark lines called growth or incremental lines. Following mammalian research, a seasonal rhythm of incremental line formation is also assumed in humans. Previous attempts at visualising incremental lines in the AEFC by scanning electron microscopy (SEM) were not particularly successful. The aim of the present study was to detect incremental lines in the AEFC and to analyse their underlying structure by SEM.

METHODS

For this purpose, non-embedded and resin-embedded transverse and longitudinal sections of three single-rooted teeth obtained from different patients were investigated. The thin sections were not pre-treated (e.g. by etching, grinding or coating).

RESULTS

Lamellar structures, which could be identified as incremental lines, were detectable in both transverse and longitudinal sections, with transverse orientation in the cross-section and longitudinal orientation in the longitudinal section. The lamellar pattern was created by broad fibre-rich layers alternating with narrow fibre-poor layers. The orientation of the collagen fibres changed from layer to layer from transverse to radial direction. The visibility of the layered structure discovered varied significantly.

CONCLUSIONS

The study demonstrate that it is possible, in principle, to detect incremental lines in AEFC and to identify their basic structure using SEM. Our results suggest that the density and orientation of the fibres play an essential role in the formation of incremental lines. Functional aspects seem to be of particular importance.

摘要

背景

牙骨质覆盖在牙根牙本质的表面,在一生中不断地以薄层形式产生和沉积。从功能上可以区分出不同类型的牙骨质,大致可分为无细胞(原发性牙骨质)和有细胞(继发性牙骨质)形式。一种主要类型是无细胞外纤维牙骨质(AEFC),它覆盖牙根的颈段和中段。AEFC 的横切面上的光镜检查显示出交替的明暗线的层状图案,称为生长或递增线。在哺乳动物研究的基础上,人类的牙骨质也被假设存在季节性的递增线形成节律。以前通过扫描电子显微镜(SEM)观察 AEFC 中递增线的尝试并不特别成功。本研究的目的是检测 AEFC 中的递增线,并通过 SEM 分析其潜在结构。

方法

为此,从不同患者获得的三个单根牙的非包埋和树脂包埋的横切和纵切面进行了研究。薄切片未经预处理(例如蚀刻、研磨或涂层)。

结果

在横切和纵切面上都可以检测到层状结构,在横切面上呈横向排列,在纵切面上呈纵向排列。层状结构由宽纤维丰富层与窄纤维贫化层交替形成。胶原纤维的方向从一层到另一层从横向变为径向。发现的层状结构的可见度差异很大。

结论

本研究表明,使用 SEM 检测 AEFC 中的递增线并识别其基本结构是可行的。我们的结果表明,纤维的密度和方向在递增线的形成中起着重要作用。功能方面似乎尤为重要。

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