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体外研究非热氩等离子体改善牙本质与自酸蚀粘接系统之间的粘接效果。

In vitro study on non-thermal argon plasma in improving the bonding efficacy between dentin and self-etch adhesive systems.

机构信息

Department of Prosthodontics, School of Stomatology, Xi'an Medical University.

Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, Department of Prosthodontics, College of Stomatology, Xi'an Jiaotong University.

出版信息

Dent Mater J. 2022 Jul 30;41(4):595-600. doi: 10.4012/dmj.2021-215. Epub 2022 Apr 29.

Abstract

Self-etch adhesive systems have the advantages of simple operating steps and low technique sensitivity. However, some deficiencies of self-etch adhesive result that the immediate bonding strength between self-etch adhesive and dentine is not so high. Non-thermal atmospheric pressure plasma (NTAPP) can be used for surface modification. Previous studies of our research group have proven that NTAPP can improve bonding durability between dentine and etch-and-rinse adhesive. However, it is still unknown whether NTAPP can improve bonding strength between dentine and self-etch adhesive. The study observed the contact angle on dentine surface, the adhesive permeability and MTBS. The study proved that NTAPP can improve dentine surface wettability, clear up smear layer, and enhanced the self-etch adhesive permeability in dentine bonding interface. In conclusion, NTAPP could improve the bonding strength between dentine and self-etch adhesive systems. The most optimum treating time was 15 s.

摘要

自酸蚀粘接系统具有操作步骤简单、技术敏感性低等优点。然而,自酸蚀粘接剂存在一些不足,导致自酸蚀粘接剂与牙本质之间的即刻粘接强度不高。非热常压等离子体(NTAPP)可用于表面改性。本研究组的先前研究已证明,NTAPP 可以提高牙本质与全酸蚀粘接剂之间的粘接耐久性。然而,NTAPP 是否可以提高自酸蚀粘接剂与牙本质之间的粘接强度仍不清楚。本研究观察了牙本质表面的接触角、粘接剂渗透性和 MTBS。研究证明,NTAPP 可以改善牙本质表面润湿性,清除玷污层,并增强牙本质粘接界面中的自酸蚀粘接剂渗透性。总之,NTAPP 可以提高牙本质与自酸蚀粘接系统之间的粘接强度。最佳处理时间为 15 秒。

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