Remineralization of Demineralized Enamel and Dentine Using 3 Dentifrices-An InVitro Study.

IF 0.6 4区 工程技术 Q4 MECHANICS Fluid Dynamics Pub Date : 2019-09-02 DOI:10.3390/dj7030091
Manjit Talwar, Ali Borzabadi-Farahani, Edward Lynch, Peter Borsboom, Jan Ruben
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Abstract

Objectives: To monitor the electrical resistance of artificially demineralized enamel and root dentine after exposure to different fluoridated dentifrices and, using transversal microradiography, to quantify remineralization. Materials and methods: This in-vitro blind investigation used 20 extracted teeth (four groups of five each). Each group was exposed to one test dentifrice [Colgate PreviDent (5000 ppm F), Colgate Winterfresh gel (1100 ppm F), Fluocaril Bi-Fluoré (2500 ppm F) and placebo (without fluoride)] three times daily for three minutes for 4 weeks. In between exposure to the test dentifrices, teeth were stored in a saliva storage solution. An Electrical Caries Monitor measured the electrical resistance at baseline and during the four-week test period at weekly intervals. The measurements were log transformed and Duncan's multiple range test applied. Remineralization was quantified using transversal microradiography. Results: Log mean (SD) electronic carries monitor (ECM) measurements in enamel at baseline and after 4 weeks of exposure to the test dentifrices were 4.07(1.53) and 3.87(0.90) (Placebo-Fluocaril), 4.11(1.86) and 4.64(1.43) (Colgate Winterfresh gel), 4.81(0.9) and 4.21(1.20) (Fluocaril Bi-Fluoré), and 4.60(0.88) and 3.76(0.9) (Colgate PreviDent). Corresponding measurements in dentine were 2.13(0.89) and 3.06(0.87) (Placebo-Fluocaril), 1.87(0.63) and 2.88(1.32) (Colgate Winterfresh gel), 2.47(1.20) and 1.65(0.60) (Fluocaril), and 2.16(0.00), and 2.34(1.07) for Colgate PreviDent. Lesion depth (µm) after microradiography in enamel was 100.1 (Placebo), 50.6 (Colgate Winterfresh gel), and 110.2 (Fluocaril, and 97.1 (Colgate PreviDent), and corresponding values in dentine were 169.7, 154.8, 183.7, and 153.5. The correlation of ECM and microradiographic parameters was negative (p < 0.05). Conclusion: Exposure of artificially demineralized enamel and root dentine to fluoridated dentifrices and saliva storage solution resulted in remineralization as follows: Colgate Winterfresh > Colgate PreviDent > Placebo-Fluocaril > Fluocaril Bi-Fluoré. Remineralization in teeth of the Placebo dentifrice group may be attributed to the presence of calcium and phosphate ions in the saliva storage solution.

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使用 3 种牙膏对脱矿牙釉质和牙本质进行再矿化--体外研究
研究目的监测人工脱矿的牙釉质和根部牙本质在接触不同含氟牙膏后的电阻,并使用横向微射线照相术对再矿化进行量化。材料和方法:这项体外盲法研究使用了 20 颗拔牙(4 组,每组 5 颗)。每组使用一种测试牙膏[高露洁 PreviDent(5000 ppm F)、高露洁 Winterfresh 凝胶(1100 ppm F)、Fluocaril Bi-Fluoré (2500 ppm F)和安慰剂(不含氟)],每天三次,每次三分钟,连续使用 4 周。在两次接触测试牙膏之间,牙齿被保存在唾液储存液中。在基线和为期四周的测试期间,龋齿电监测仪每周测量一次电阻。测量结果进行对数转换,并进行邓肯多重范围检验。使用横向微射线照相术对再矿化进行量化。结果在基线和接触测试牙膏 4 周后,珐琅质中电子携带监测器 (ECM) 测量值的对数平均值(标度)分别为 4.07(1.53) 和 3.87(0.90) (安慰剂-氟利昂)。90)(安慰剂-Fluocaril)、4.11(1.86)和 4.64(1.43)(高露洁 Winterfresh 凝胶)、4.81(0.9)和 4.21(1.20)(Fluocaril Bi-Fluoré )以及 4.60(0.88)和 3.76(0.9)(高露洁 PreviDent)。牙本质中的相应测量值分别为:2.13(0.89) 和 3.06(0.87)(安慰剂-Fluocaril),1.87(0.63) 和 2.88(1.32)(高露洁 Winterfresh 凝胶),2.47(1.20) 和 1.65(0.60)(Fluocaril),以及 2.16(0.00)和 2.34(1.07)(高露洁 PreviDent)。釉质中的微射线照相后病变深度(微米)分别为 100.1(安慰剂)、50.6(高露洁 Winterfresh 凝胶)、110.2(Fluocaril)和 97.1(高露洁 PreviDent),牙本质中的相应值分别为 169.7、154.8、183.7 和 153.5。ECM 与显微放射学参数呈负相关(P < 0.05)。结论将人工脱矿的牙釉质和根部牙本质暴露于含氟牙膏和唾液储存液中会导致再矿化,具体结果如下:高露洁 Winterfresh > 高露洁 PreviDent > Placebo-Fluocaril > Fluocaril Bi-Fluoré。安慰剂牙膏组牙齿再矿化的原因可能是唾液储存液中含有钙离子和磷酸根离子。
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来源期刊
Fluid Dynamics
Fluid Dynamics MECHANICS-PHYSICS, FLUIDS & PLASMAS
CiteScore
1.30
自引率
22.20%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Fluid Dynamics is an international peer reviewed journal that publishes theoretical, computational, and experimental research on aeromechanics, hydrodynamics, plasma dynamics, underground hydrodynamics, and biomechanics of continuous media. Special attention is given to new trends developing at the leading edge of science, such as theory and application of multi-phase flows, chemically reactive flows, liquid and gas flows in electromagnetic fields, new hydrodynamical methods of increasing oil output, new approaches to the description of turbulent flows, etc.
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