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含氟材料的抗压强度、氟释放及再充氟

Compressive strength, fluoride release and recharge of fluoride-releasing materials.

作者信息

Xu Xiaoming, Burgess John O

机构信息

Department of Operative Dentistry and Biomaterials, School of Dentistry, Louisiana State University Health Science Center, 1100 Florida Ave., New Orleans, LA 70119, USA.

出版信息

Biomaterials. 2003 Jun;24(14):2451-61. doi: 10.1016/s0142-9612(02)00638-5.

Abstract

The compressive strength, fluoride releases and recharge profiles of 15 commercial fluoride-releasing restorative materials have been studied. The materials include glass ionomers (Fuji IX, Ketac Molar, Ketac Silver, and Miracle Mix), resin-modified glass ionomers (Fuji II LC Improved, Photac-Fil, and Vitremer), compomers (Compoglass, Dyract AP, F2000, and Hytac) and composite resins (Ariston pHc, Solitaire, Surefil and Tetric Ceram). A negative linear correlation was found between the compressive strength and fluoride release (r(2)=0.7741), i.e., restorative materials with high fluoride release have lower mechanical properties. The fluoride-releasing ability can be partially regenerated or recharged by using a topical fluoride agent. In general, materials with higher initial fluoride release have higher recharge capability (r(2)=0.7088). Five equations have been used in curve fitting to describe the cumulative fluoride release from different materials. The equation F=F(1-e(-bt))+betat best describes the cumulative fluoride release for most glass ionomers, resin-modified glass ionomers, and some high fluoride-releasing compomers and composites, whereas F=F/(t(1/2)+t)+alphat best describes the cumulative fluoride release for most compomers and composite resins. The clinic applications of different fluoride-releasing materials have also been discussed.

摘要

对15种市售含氟修复材料的抗压强度、氟释放量及再充注情况进行了研究。这些材料包括玻璃离子体(富士IX、Ketac Molar、Ketac Silver和Miracle Mix)、树脂改性玻璃离子体(富士II LC改进型、Photac-Fil和Vitremer)、复合体(Compoglass、Dyract AP、F2000和Hytac)以及复合树脂(Ariston pHc、Solitaire、Surefil和Tetric Ceram)。发现抗压强度与氟释放之间存在负线性相关(r(2)=0.7741),即氟释放量高的修复材料机械性能较低。通过使用局部用氟剂,含氟能力可部分再生或再充注。一般来说,初始氟释放量较高的材料再充注能力也较高(r(2)=0.7088)。使用了五个方程进行曲线拟合以描述不同材料的累积氟释放情况。方程F=F(1-e(-bt))+betat最能描述大多数玻璃离子体、树脂改性玻璃离子体以及一些高氟释放复合体和复合材料的累积氟释放情况,而F=F/(t(1/2)+t)+alphat最能描述大多数复合体和复合树脂的累积氟释放情况。还讨论了不同含氟材料的临床应用。

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