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玻璃离子和复合体修复材料的氟释放:6个月的数据。

Fluoride release from glass-ionomer and compomer restorative materials: 6-month data.

作者信息

Shaw A J, Carrick T, McCabe J F

机构信息

Department of Child Dental Health, Newcastle Dental School, Newcastle upon Tyne, UK.

出版信息

J Dent. 1998 May;26(4):355-9. doi: 10.1016/s0300-5712(97)00016-x.

Abstract

OBJECTIVES

To investigate the daily fluoride release of two glass ionomers (Ketac-Fil and ChemFil Superior) and two compomers (Compoglass and Dyract Restorative) over 6 months.

METHODS

A pilot study evaluated the time taken for sample solutions to equilibrate to establish an appropriate time period for sample solution storage between fluoride ion measurements. In the main study storage water replacement and fluoride ion determination was made daily using a specific ion electrode, TISAB buffer and standard solutions for calibration.

RESULTS

Equilibration of fluoride concentration in aqueous solution occurred in under 48 h for all materials. Total fluoride released (microgram mm-2) after 6 months by Ketac-Fil (30.6, s.d. 4.9) was significantly greater than ChemFil Superior (12.7, s.d. 2.5), Compoglass (10.4, s.d. 1.0) and Dyract Restorative (7.7, s.d. 1.7) (P < 0.05). Daily fluoride release at 24 h and 10 days was significantly higher for the glass ionomers than the compomers (P < 0.05). After 40 days the daily fluoride release (microgram mm-2) from ChemFil Superior (0.05, s.d. 0.01) was not significantly different from Compoglass (0.04, s.d. 0.01) and Dyract Restorative (0.03, s.d. 0.00) (P > 0.05). Daily fluoride release from Ketac-Fil remains significantly higher than the compomers at 3 and 6 months (P < 0.05).

CONCLUSIONS

Specimens stored in water equilibrate rapidly, suggesting the rate at which storage water is changed may alter the relative fluoride release rates of materials. This important fact is often overlooked. Fluoride release from the glass ionomers is initially higher than for the compomers. Fluoride release from glass ionomers falls rapidly to approach levels released by compomers. Compomers produce no initial burst of fluoride and levels of release remain relatively constant.

摘要

目的

研究两种玻璃离子水门汀(Ketac - Fil和ChemFil Superior)以及两种复合体(Compoglass和Dyract Restorative)在6个月内的每日氟释放量。

方法

一项预试验评估了样品溶液达到平衡所需的时间,以确定在氟离子测量之间储存样品溶液的合适时间段。在主要研究中,每天使用特定离子电极、总离子强度调节缓冲液(TISAB)和标准溶液进行校准,更换储存水并测定氟离子。

结果

所有材料在48小时内水溶液中的氟浓度达到平衡。6个月后,Ketac - Fil释放的总氟量(微克/平方毫米)为30.6(标准差4.9),显著高于ChemFil Superior(12.7,标准差2.5)、Compoglass(10.4,标准差1.0)和Dyract Restorative(7.7,标准差1.7)(P < 0.05)。玻璃离子水门汀在24小时和10天时的每日氟释放量显著高于复合体(P < 0.05)。40天后,ChemFil Superior的每日氟释放量(微克/平方毫米)为0.05(标准差0.01),与Compoglass(0.04,标准差0.01)和Dyract Restorative(0.03,标准差0.00)无显著差异(P > 0.05)。在3个月和6个月时,Ketac - Fil的每日氟释放量仍显著高于复合体(P < 0.05)。

结论

储存在水中的样品迅速达到平衡,这表明更换储存水的速率可能会改变材料的相对氟释放速率。这一重要事实常常被忽视。玻璃离子水门汀最初的氟释放量高于复合体。玻璃离子水门汀的氟释放量迅速下降,接近复合体的释放水平。复合体不会出现氟的初始爆发,释放量保持相对恒定。

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