有机与无机类似物治疗白斑病变的有效性:体外研究

Moshera AbdElbar, Rania Badawy, Enas El-ddamony
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摘要

简介:脱矿是指牙齿结构中的钙和磷酸盐离子被酸性侵蚀而溶解到牙菌斑和唾液中。白斑病变始于牙齿的最外层,通过表面羟基磷灰石晶格中矿物质离子的损失损害牙齿硬组织。理想的再矿化剂应尽可能地模拟天然牙齿结构矿物晶体的组织和微结构。目的:评价比较两种再矿化剂对初始牙釉质龋齿再矿化的影响。此外,我们还研究了再矿化剂和一种渗透树脂材料对脱矿牙釉质颜色的影响及其掩盖白斑病变的能力。研究对象和方法:选择50颗完整、新鲜的恒牙(取自糖尿病患者),置于室温(22℃)蒸馏水中保存。根据治疗方式将所选牙齿分为对照组和脱矿组。结果:ΔE治疗组间差异显著,p<0.001。脱矿牙釉质颜色变化值最高(6.03±0.4)。所有脱矿牙釉质处理均能显著恢复牙齿颜色。结论:curodon修复和MI Paste Plus可以填补牙齿脱矿结构的缺陷和微孔,显著恢复牙齿颜色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effectiveness of Organic Versus Inorganic Analogues for Treating White Spot Lesions: An in Vitro Study
Introduction: Demineralization denotes the dissolution of the calcium and phosphate ions from the hydroxyl-apatite/tooth structure into the plaque and saliva caused by the acidic attack. White spot lesions start at the outermost layer of the teeth, damaging the dental hard tissues through the loss of mineral ions from the hydroxyapatite lattice at the surface. An ideal remineralizing agent should mimic the organization and micro-architecture of natural tooth structure mineral crystals to the greatest extent possible. Aim: S tudy aimed to evaluate and compare the effect of two remineralizing agents on remineralization of initial enamel carious lesions. Furthermore, the impact of both remineralizing agents and one infiltrating resin material on the color of demineralized enamel and their ability to mask white spot lesions was investigated. Subjects and Methods: 50 intact, freshly extracted permanent human anterior central incisors (extracted from diabetic patients) were selected and stored in distilled water at room temperature (22 0 C). Selected teeth were classified into two main groups (Control and Demineralized) according to the type of treatment. Results: Significant differences resulted between treatments for ΔE at p<0.001. Demineralized enamel showed the highest significant color change values (6.03±0.4). All treatments of demineralized enamel significantly restored the tooth color. Conclusion: Curodont Repair and MI Paste Plus can fill up defects and micropores on demineralized tooth structure, significantly restoring the tooth color.
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