Investigating the surface topography of human acellular and cellular tooth cementum by atomic force microscopy

IF 1.7 3区 医学 Q2 ANATOMY & MORPHOLOGY Annals of Anatomy-Anatomischer Anzeiger Pub Date : 2025-04-01 Epub Date: 2025-02-12 DOI:10.1016/j.aanat.2025.152392
Wiktor Luczak , Christopher Hinrichs , Christoph Kleber , Achim Walter Hassel , Kurt W. Alt , Nicole Nicklisch
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Abstract

Introduction

Dental cementum plays a key role in maintaining the health and functional integrity of teeth throughout an individual’s life. While different cementum types are distinguished according to location and function, their specific properties are not yet fully understood.

Objective

The study aimed to compare the structural properties of different types of tooth cementum by analysing their surface texture using tapping mode atomic force microscopy (TM-AFM).

Methods

Transverse and longitudinal sections of five anterior teeth extracted from four male individuals were prepared and analysed by TM-AFM (Core AFM) both with and without hydrochloric acid etching. The TM-AFM measurements were further analysed using the Gwyddion software to determine the roughness parameters (root mean square of height irregularities and mean roughness).

Results

The acid-etched sections exhibited distinctive features with regard to fibre structure and orientation compared to the unetched sections, with fundamental differences between acellular and cellular cementum. In contrast to acellular extrinsic fibre cementum (AEFC), cellular intrinsic fibre cementum (CIFC) showed increased roughness values after acid etching, with some variability, both between teeth and between subjects. The relative percentage difference (RPD) between the cementum types varied between 11.4 % in unetched transverse sections and up to 89.8 % in etched sections. The AEFC images revealed finely branched fibres between radial Sharpey’s fibre bundles.

Conclusion

Our results show that TM-AFM imaging combined with acid etching is a suitable technique for characterising the surface texture of different types of tooth cementum.
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用原子力显微镜研究人类脱细胞牙骨质和细胞牙骨质的表面形貌
牙骨质在维持人一生中牙齿的健康和功能完整方面起着关键作用。虽然不同的牙骨质类型是根据位置和功能来区分的,但它们的具体性质尚未完全了解。目的利用原子力显微镜(TM-AFM)分析不同类型牙骨质的表面结构,比较不同类型牙骨质的结构特性。方法制备4例男性5颗前牙的横切面和纵切面,用TM-AFM (Core AFM)对其进行分析。利用Gwyddion软件进一步分析TM-AFM测量结果,确定粗糙度参数(高度不规则度和平均粗糙度的均方根)。结果酸蚀后的骨骨质与未酸蚀后的骨骨质相比,在纤维结构和取向上表现出明显的差异,在非细胞骨骨质和细胞骨骨质之间存在着根本的差异。与脱细胞外纤维牙骨质(AEFC)相比,细胞内纤维牙骨质(CIFC)在酸蚀后粗糙度值增加,并且在牙齿之间和受试者之间都有一定的差异。不同牙骨质类型之间的相对百分比差异(RPD)在未蚀刻的横截面上为11.4% %,在蚀刻的横截面上高达89.8% %。AEFC图像显示径向Sharpey纤维束之间的细分支纤维。结论TM-AFM结合酸蚀技术是表征不同类型牙骨质表面结构的一种有效方法。
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来源期刊
Annals of Anatomy-Anatomischer Anzeiger
Annals of Anatomy-Anatomischer Anzeiger 医学-解剖学与形态学
CiteScore
4.40
自引率
22.70%
发文量
137
审稿时长
33 days
期刊介绍: Annals of Anatomy publish peer reviewed original articles as well as brief review articles. The journal is open to original papers covering a link between anatomy and areas such as •molecular biology, •cell biology •reproductive biology •immunobiology •developmental biology, neurobiology •embryology as well as •neuroanatomy •neuroimmunology •clinical anatomy •comparative anatomy •modern imaging techniques •evolution, and especially also •aging
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