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机械加载的树脂-牙本质界面的再矿化:一个过渡性且同步的多步骤过程。

Remineralization of mechanical loaded resin-dentin interface: a transitional and synchronized multistep process.

作者信息

Toledano Manuel, Aguilera Fátima S, Cabello Inmaculada, Osorio Raquel

机构信息

Faculty of Dentistry, Dental Materials Section, University of Granada, Colegio Máximo de Cartuja s/n, 18071 , Granada, Spain,

出版信息

Biomech Model Mechanobiol. 2014 Nov;13(6):1289-302. doi: 10.1007/s10237-014-0573-9. Epub 2014 Mar 27.

Abstract

This study evaluated the ability of different in vitro mechanical loading tests to promote new mineral formation at bonded dentin interfaces. This research demonstrated a sequential transition in the dentin remineralizing procedure through the analysis of the mineral and matrix gradients. Mechanical loading in phosphoric acid (PA)-treated samples promoted a generalized increases in relative presence of minerals, crystallinity, ratio of phosphate peaks and a decrease in the gradient of mineral content. The organic component showed, in general terms, an increase in crosslinking. [Formula: see text]-helices incremented in sine and square waveform loading. In EDTA + SB specimens, the relative mineral concentration incremented when loading in hold, in general. Nonuniform parameters of Bis-GMA and adhesive penetration were encountered in both groups. PA + SB promoted the highest dentin mineralization degree when loading in square, based on the increase in the relative presence of minerals and crystallinity. EDTA + SB produced any advance crystallographic maturity at the interface. High crosslinking parameters and conformational changes in proteins in PA-treated specimens indicated, indirectly, that the first remineralization is intrafibrillar.

摘要

本研究评估了不同体外机械加载试验促进粘结牙本质界面新矿物质形成的能力。通过对矿物质和基质梯度的分析,本研究证明了牙本质再矿化过程中的顺序转变。磷酸(PA)处理样品中的机械加载促进了矿物质相对含量、结晶度、磷酸盐峰比率的普遍增加以及矿物质含量梯度的降低。总体而言,有机成分的交联增加。在正弦和方波加载中,α-螺旋增加。在EDTA + SB标本中,一般来说,保持加载时相对矿物质浓度会增加。两组均遇到双甲基丙烯酸缩水甘油酯(Bis-GMA)和粘结剂渗透的不均匀参数。基于矿物质相对含量和结晶度的增加,PA + SB在方波加载时促进了最高的牙本质矿化程度。EDTA + SB在界面处产生了任何晶体学成熟度的提高。PA处理标本中的高交联参数和蛋白质构象变化间接表明,首次再矿化是在纤维内进行的。

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