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人乳牙釉质对仿生牙膏治疗反应的形态化学观察

Morpho-Chemical Observations of Human Deciduous Teeth Enamel in Response to Biomimetic Toothpastes Treatment.

作者信息

Bossù Maurizio, Matassa Roberto, Relucenti Michela, Iaculli Flavia, Salucci Alessandro, Di Giorgio Gianni, Familiari Giuseppe, Polimeni Antonella, Di Carlo Stefano

机构信息

Department of Oral and Maxillofacial Science, Sapienza University of Rome, Via A. Borelli 50, 00161 Rome, Italy.

Department of Anatomical, Histological, Forensic and Orthopaedic Sciences, Section of Human Anatomy, Sapienza University of Rome, Via A. Borelli 50, 00161 Rome, Italy.

出版信息

Materials (Basel). 2020 Apr 11;13(8):1803. doi: 10.3390/ma13081803.

Abstract

Today, biomaterial research on biomimetic mineralization strategies represents a new challenge in the prevention and cure of enamel mineral loss on delicate deciduous teeth. Distinctive assumptions about the origin, the growth, and the functionalization on the biomimetic materials have been recently proposed by scientific research studies in evaluating the different clinical aspects of treating the deciduous tooth. Therefore, appropriate morpho-chemical observations on delivering specific biomaterials to enamel teeth is the most important factor for controlling biomineralization processes. Detailed morpho-chemical investigations of the treated enamel layer using three commercial toothpastes (Biorepair, F1400, and F500) were performed through variable pressure scanning electron microscopy (VP-SEM) and energy dispersive X-ray spectroscopy (EDS) on deciduous teeth in their native state. A new microscopy methodology allowed us to determine the behaviors of silicate, phosphate, and calcium contents from the early stage, as commercially available toothpastes, to the final stage of delivered diffusion, occurring within the enamel layer together with their penetration depth properties. The reported results represent a valuable background towards full comprehension of the role of organic-inorganic biomaterials for developing a controlled biomimetic toothpaste in biofluid media.

摘要

如今,关于仿生矿化策略的生物材料研究在预防和治疗脆弱乳牙的牙釉质矿物质流失方面面临着新的挑战。近期的科研研究在评估治疗乳牙的不同临床方面时,对仿生材料的起源、生长和功能化提出了独特的假设。因此,对向牙釉质输送特定生物材料进行适当的形态化学观察是控制生物矿化过程的最重要因素。使用三种市售牙膏(Biorepair、F1400和F500)对处理后的牙釉质层进行详细的形态化学研究,通过可变压力扫描电子显微镜(VP-SEM)和能量色散X射线光谱(EDS)对天然状态的乳牙进行观察。一种新的显微镜方法使我们能够确定从早期作为市售牙膏的硅酸盐、磷酸盐和钙含量,到在牙釉质层内发生的输送扩散的最终阶段,以及它们的渗透深度特性。所报告的结果为全面理解有机-无机生物材料在生物流体介质中开发可控仿生牙膏的作用提供了有价值的背景。

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