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Calcium hydroxide, pH-neutralization and formulation of model self-adhesive resin cements

机译:氢氧化钙,pH中和和模型自粘树脂水泥的配方

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Objectives. This study investigated the incorporation of calcium hydroxide (CH) and its effect on pH-neutralization and fundamental properties of model self-adhesive resin cements (SARCs). Methods. Two-paste SARCs were obtained. Paste A: UDMA/Bis-GMA/TEGDMA/HEMA co-monomer, 25% phosphate monomer (GDMA-P), and 50% glass fillers; Paste B: UDMA/HEMA co-monomer, water, photoinitiators, and 60% glass fillers. CH was added at final concentrations of 0 (control), 0.25%, 0.5%, 1%, 2%, and 4%. Equal volumes of the pastes were mixed before testing. pH-neutralization of the eluate was followed during 24-h storage in distilled water. Other physico-chemical properties were evaluated only for the control and CH concentrations that neutralized the eluate. These evaluations included degree of C=C conversion, film thickness, flexural strength/modulus, work-of-fracture, hardness, depth of cure, water sorption/solubility, and dentin bond strength. Statistical comparisons were conducted at a 5% significance level. Results. All CH concentrations above 0.25% caused pH increase of the eluate at 24h. The only CH concentrations leading to pH-neutralization were 2% and 4%. Compared with the control cement, the addition of 4% CH decreased the flexural strength, flexural modulus, work-of-fracture, C=C conversion, and dentin bond strength. The cement with 2% CH had similar properties to the control cement, except for lower work-of-fracture and lower film thickness. Hardness, depth of cure, and water sorption were not affected by CH. The cement with 4% CH had lower solubility and film thickness than the other materials. Significance. Incorporation of 2% CH to SARCs may lead to pH-neutralization without dramatically affecting other material properties.
机译:目标。这项研究调查了氢氧化钙(CH)的掺入及其对模型自粘树脂水泥(SARC)的pH中和和基本性能的影响。方法。获得两糊式SARC。糊剂A:UDMA / Bis-GMA / TEGDMA / HEMA共聚单体,25%的磷酸盐单体(GDMA-P)和50%的玻璃填料;浆糊B:UDMA / HEMA共聚单体,水,光引发剂和60%玻璃填料。加入CH的终浓度为0(对照),0.25%,0.5%,1%,2%和4%。在测试之前将等体积的糊状物混合。在蒸馏水中储存24小时后,对洗脱液进行pH中和。仅针对中和洗脱液的对照和CH浓度评估了其他理化性质。这些评估包括C = C转化度,膜厚度,抗弯强度/模量,断裂功,硬度,固化深度,吸水率/溶解度和牙本质粘合强度。统计比较以5%的显着性水平进行。结果。所有CH浓度高于0.25%都会导致洗脱液在24小时内pH升高。导致pH中和的唯一CH浓度为2%和4%。与对照水泥相比,添加4%CH会降低弯曲强度,弯曲模量,断裂功,C = C转化率和牙本质粘结强度。具有2%CH的水泥具有与对照水泥相似的性能,除了较低的断裂功和较低的膜厚。硬度,固化深度和吸水率不受CH影响。具有4%CH的水泥比其他材料具有更低的溶解度和膜厚。意义。在SARC中加入2%CH可能会导致pH中和,而不会显着影响其他材料的性能。

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