首页> 外文期刊>Journal of Indian Society of Pedodontics and Preventive Dentistry >Comparative evaluation of shear bond strength and microleakage of tricalcium silicate-based restorative material and radioopaque posterior glass ionomer restorative cement in primary and permanent teeth: An in vitro study
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Comparative evaluation of shear bond strength and microleakage of tricalcium silicate-based restorative material and radioopaque posterior glass ionomer restorative cement in primary and permanent teeth: An in vitro study

机译:硅酸三钙基修复材料与不透射线的后玻璃离聚物修复水泥在恒牙和恒牙中的剪切粘结强度和微渗漏的比较评估:一项体外研究

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Background: Restoration of carious primary molars is still a major concern while treating the young children that too in deep carious lesion which extends below the cemento-enamel junction (CEJ) where pulp protection and achieving adequate marginal seal are very important to prevent secondary caries. The needs were met with the development of new materials. One such of new bioactive material is tricalcium silicate-based restorative material (Biodentine), recommended for restoring deep lesions. Aim: To evaluate and compare shear bond strength and microleakage of tricalcium silicate-based restorative material (Biodentine) and glass ionomer cement (Fuji IX GP) in primary and permanent teeth. Materials and Methods: Occlusal surface of crowns were ground flat. PVC molds were stabilized over flat dentin surface and filled with tricalcium silicate-based restorative material (Biodentine)/glass ionomer cement (Fuji IX GP) according to group ascertained. Shear bond strength was evaluated using universal testing machine (INSTRON). Standardized Class II cavities were prepared on both primary and permanent teeth, and then restored with tricalcium silicate-based restorative material (Biodentine)/glass ionomer cement (Fuji IX GP) according to group ascertained, over which composite resin material was restored using an open sandwich technique. Microleakage was assessed using dye penetration. Microleakage was examined using a stereomicroscope. Results: Results showed that glass ionomer cement (Fuji IX GP) exhibited better shear bond strength than tricalcium silicate-based restorative material (Biodentine). Mean microleakage score for glass ionomer cement (Fuji IX GP) in permanent teeth was 1.52 and for primary teeth was 1.56. The mean microleakage for tricalcium silicate-based restorative material (Biodentine) in permanent teeth was 0.76 and for primary teeth was 0.60. Glass ionomer cement (Fuji IX GP) exhibited more microleakage than tricalcium silicate-based restorative material (Biodentine), which was statistically significant both in permanent (P = 0.02) and primary (P = 0.006) teeth. Conclusion: Shear bond strength of glass ionomer cement (Fuji IX GP) is greater than tricalcium silicate-based restorative material (Biodentine) in both primary and permanent teeth. Tricalcium silicate-based restorative material (Biodentine) exhibited less microleakage compared to glass ionomer cement (Fuji IX GP) in both primary and permanent molars.
机译:背景:在治疗幼儿时,仍然需要重点关注龋齿的修复,而在龋齿病灶深深的水泥牙釉质交界处(CEJ)下方,龋齿的保护和获得足够的边缘密封对于预防继发性龋齿非常重要。通过开发新材料满足了需求。一种新的生物活性材料是基于硅酸三钙的修复材料(Biodentine),推荐用于修复深部病变。目的:评估和比较硅酸三钙基修复材料(Biodentine)和玻璃离聚物水泥(Fuji IX GP)在恒牙和恒牙中的剪切粘结强度和微渗漏。材料和方法:将牙冠的咬合面磨平。根据确定的组,将PVC模具稳定在平坦的牙本质表面上,并填充硅酸三钙基修复材料(Biodentine)/玻璃离聚物水泥(Fuji IX GP)。使用万能试验机(INSTRON)评估剪切粘结强度。在乳牙和恒牙上均准备了标准的II类腔,然后根据确定的组使用硅酸三钙基修复材料(Biodentine)/玻璃离聚物水泥(Fuji IX GP)进行修复,然后使用开放式修复复合树脂材料。三明治技术。使用染料渗透评估微渗漏。使用立体显微镜检查微渗漏。结果:结果表明,玻璃离聚物水泥(Fuji IX GP)表现出比基于硅酸三钙的修复材料(Biodentine)更好的剪切粘结强度。玻璃离子聚合物水泥(Fuji IX GP)在恒齿中的平均微渗漏评分为1.52,而乳齿为1.56。永久性牙齿中基于硅酸三钙的修复材料(Biodentine)的平均微渗漏为0.76,而乳齿的平均微渗漏为0.60。与基于硅酸三钙的修复材料(Biodentine)相比,玻璃离聚物水泥(Fuji IX GP)显示出更多的微渗漏,这在永久性(P = 0.02)和初级(P = 0.006)牙齿中均具有统计学意义。结论:玻璃离子聚合物水泥(Fuji IX GP)的剪切粘结强度在硅酸盐和恒牙中均大于硅酸三钙基修复材料(Biodentine)。与玻璃离聚物水泥(Fuji IX GP)相比,基于硅酸三钙的修复材料(Biodentine)在磨牙和永久磨牙中均表现出较少的微渗漏。

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