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首页> 外文期刊>Journal of Clinical and Diagnostic Research >Comparative Evaluation of Fluoride Recharge Ability of Conventional and Hydroxyapatite Modified Glass Ionomer Cement with Daily Low Fluoride Exposure- An Invitro Study
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Comparative Evaluation of Fluoride Recharge Ability of Conventional and Hydroxyapatite Modified Glass Ionomer Cement with Daily Low Fluoride Exposure- An Invitro Study

机译:每日低氟暴露量的常规和羟基磷灰石改性玻璃离聚物水泥的氟荷电能力的比较评估-体外研究

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Introduction: Glass ionomer cement (GIC) has best suited paediatric dentists and is well recognised in the preventive era of dentistry. However its use is affected by its inferior mechanical properties. Hydroxyapatite whiskers have been lately introduced as strengthening additive without affecting its fluoride releasing property, but literature lacks data related to its effect on recharging ability of glass ionomer cement. Aim: To evaluate and compare fluoride release from hydroxyapatite incorporated glass ionomer cement following recharging with low fluoride dentifrices. Materials and Methods: An 8% Hydroxyapatite whiskers were added to Conventional Glass ionomer powder and 40 specimens each of conventional and Hydroxyapatite Glass ionomer cement were prepared using customised Teflon mould (5mm x 2mm) and were suspended in deionised water. Recharging of aged specimens was done using low fluoridated dentifrices containing 500ppm fluoride, twice daily and water was replenished every 24 hours. Fluoride release was analysed daily for 7 days and then weekly till 21 days using Sension 4 pH/ion selective electrode. Data thus obtained was statistically analysed by descriptive analysis followed by repeated measures ANOVA. Results: Significant (p<0.01) increase in fluoride release was observed in both the materials following recharging regimen. Recharge pattern of hydroxyapatite glass ionomer was found to be similar to conventional glass ionomer cement. Conclusion: Within the limitations of this study it can be evinced that fluoride rechargability and re-release remains unaffected by the addition of hydroxyapatite whiskers and hence proves to be more acceptable additive to glass ionomer cement to improve its mechanical properties widening its arena of usage by clinicians.
机译:简介:玻璃离聚物水泥(GIC)最适合儿科牙医,并且在牙科预防时代已广为人知。但是,其使用受到其劣等机械性能的影响。羟基磷灰石晶须最近被引入作为增强添加剂而不影响其氟化物释放性能,但是文献缺乏有关其对玻璃离聚物水泥的再充电能力的影响的数据。目的:评估并比较在用低氟化物洁齿剂补给后,从掺入羟基磷灰石的玻璃离聚物水泥中释放的氟化物。材料和方法:将8%的羟基磷灰石晶须添加到常规玻璃离聚物粉末中,并使用定制的Teflon模具(5mm x 2mm)制备40个常规和羟基磷灰石玻璃离聚物水泥样品,并将其悬浮在去离子水中。使用含有500ppm氟化物的低氟化洁牙剂对老化的样品进行充电,每天两次,每24小时补充一次水。使用Sension 4 pH /离子选择电极每天分析氟化物释放7天,然后每周分析21天。通过描述性分析,然后重复测量ANOVA,对由此获得的数据进行统计学分析。结果:充电后,两种材料的氟化物释放量均显着增加(p <0.01)。发现羟基磷灰石玻璃离聚物的充电方式与常规玻璃离聚物水泥相似。结论:在这项研究的局限性内,可以证明添加羟基磷灰石晶须不会影响氟化物的再充电性和再释放,因此被证明是玻璃离聚物水泥更可接受的添加剂,以改善其机械性能,从而扩大了其使用范围。临床医生。

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