Attar Hanaa El, Elhiny Omnia, Salem Ghada, Abdelrahman Ahmed, Attia Mazen
Suez Canal University, Faculty of Dentistry, Orthodontics, Faculty of Dentistry, Umm al Qura University, Orthodontics, Ismailia - el Gamaa street, Ismailia 0000, Egypt.
National Research Center, El Bohouth str., Cairo 12622, Egypt.
Open Access Maced J Med Sci. 2016 Dec 15;4(4):695-699. doi: 10.3889/oamjms.2016.116. Epub 2016 Oct 21.
To test the solubility of dual cure resin modified resin cement in a food simulating solution and the shear bond strength compared to conventional Glass ionomer cement.
The materials tested were self-adhesive dual cure resin modified cement and Glass Ionomer (GIC). Twenty Teflon moulds were divided into two groups of tens. The first group was injected and packed with the modified resin cement, the second group was packed with GIC. To test the solubility, each mould was weighed before and after being placed in an analytical reagent for 30 days. The solubility was measured as the difference between the initial and final drying mass. To measure the Shear bond strength, 20 freshly extracted wisdom teeth were equally divided into two groups and embedded in self-cure acrylic resin. Four mm sections of stainless steel bands were cemented to the exposed buccal surfaces of teeth under a constant load of 500 g. Shear bond strength was measured using a computer controlled materials testing machine and the load required to deband the samples was recorded in Newtons.
GIC showed significantly higher mean weight loss and an insignificant lower Shear bond strength, compared to dual cure resin Cement.
It was found that dual cure resin modified cement was less soluble than glass ionomer cement and of comparable bond strength rendering it more useful clinically for orthodontic band cementation.
测试双固化树脂改性树脂水门汀在食品模拟溶液中的溶解性,并与传统玻璃离子水门汀比较其剪切粘结强度。
所测试的材料为自粘性双固化树脂改性水门汀和玻璃离子水门汀(GIC)。二十个聚四氟乙烯模具被分成两组,每组十个。第一组注入并填充改性树脂水门汀,第二组填充GIC。为测试溶解性,每个模具在放入分析试剂中30天前后进行称重。溶解性通过初始干燥质量与最终干燥质量之差来测量。为测量剪切粘结强度,将20颗新鲜拔除的智齿平均分成两组,并嵌入自凝丙烯酸树脂中。在500克恒定负载下,将4毫米长的不锈钢带粘结到牙齿暴露的颊面。使用计算机控制的材料试验机测量剪切粘结强度,并记录使样本脱带所需的负载,单位为牛顿。
与双固化树脂水门汀相比,GIC显示出显著更高的平均重量损失和显著更低的剪切粘结强度。
发现双固化树脂改性水门汀比玻璃离子水门汀溶解性更低,且粘结强度相当,使其在临床上更适用于正畸带环粘结。