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树脂-牙本质界面的再矿化:通过纳米压痕测量、能谱分析和扫描电子显微镜进行体内评估。

Remineralization across the resin-dentin interface: in vivo evaluation with nanoindentation measurements, EDS, and SEM.

作者信息

Akimoto N, Yokoyama G, Ohmori K, Suzuki S, Kohno A, Cox C F

机构信息

Department of Operative Dentistry, Tsurumi University School of Dental Medicine, Yokohama, Japan.

出版信息

Quintessence Int. 2001 Jul-Aug;32(7):561-70.

Abstract

OBJECTIVE

The purpose of this study was to evaluate the in vivo remineralization of the possible non-resin infiltrated hybridoid layer between the hybrid layer and the subjacent dentin substrate using nanoindentation, energy dispersive x-ray spectroscopy microanalyses (EDS), and scanning electron microscopy (SEM) technologies.

METHOD AND MATERIALS

Twenty Class V cavities were placed in healthy adult monkey teeth. Each cavity was total etched with 37% phosphoric acid for 60 seconds, rinsed, and air dispersed, and SA-Primer was applied to the collagen layer. Cavities were divided into two groups: In group 1, Protect Liner (low-viscosity resin) and Clearfil AP-X (resin composite) were placed per manufacturer's directions, and no bonding agent was placed on the acid-etched interface. In group 2, Clearfil Photobond (bonding agent) was applied, and Protect Liner and Clearfil AP-X were placed as in group 1. Teeth were observed at 7 days (control) and 6 months by nanoindentation, EDS, and SEM.

RESULTS

Six-month data showed an increased nanohardness in areas 5 pm adjacent to the demineralized or partially demineralized dentin interface. Following treatment with a conventional adhesive system on the acid-etched interface (group 2), there were increased nanohardness and calcium EDS measurements in the substrate just below the resin-dentin impregnated layer.

CONCLUSION

Our 6-month in vivo nanoindentation and EDS data demonstrate that the non-resin infiltrated zone becomes remineralized following adhesive resin treatment.

摘要

目的

本研究旨在使用纳米压痕、能量色散X射线光谱微分析(EDS)和扫描电子显微镜(SEM)技术,评估混合层与相邻牙本质基质之间可能存在的非树脂浸润混合样层的体内再矿化情况。

方法和材料

在健康成年猴牙齿上制备20个V类洞。每个洞用37%磷酸全蚀刻60秒,冲洗并空气吹干,然后将SA-底漆应用于胶原层。洞分为两组:第1组,按照制造商说明放置Protect Liner(低粘度树脂)和Clearfil AP-X(树脂复合材料),在酸蚀界面不放置粘结剂。第2组,应用Clearfil Photobond(粘结剂),并按照第1组方法放置Protect Liner和Clearfil AP-X。在7天(对照)和6个月时通过纳米压痕、EDS和SEM观察牙齿。

结果

6个月的数据显示,在与脱矿或部分脱矿牙本质界面相邻5μm区域,纳米硬度增加。在酸蚀界面用传统粘结系统处理后(第2组),在树脂-牙本质浸渍层下方的基质中,纳米硬度和钙EDS测量值增加。

结论

我们6个月的体内纳米压痕和EDS数据表明,粘结树脂处理后,非树脂浸润区会发生再矿化。

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