Department of Conservative Dentistry-Faculty of Dentistry, Jordan University of Science and Technology, Irbid, Jordan.
Dent Mater. 2011 Mar;27(3):235-43. doi: 10.1016/j.dental.2010.10.008. Epub 2010 Nov 18.
The aim of this study was to measure the effect of incorporating CPP-ACP into an autocure GIC on physical and mechanical properties, ion release and enamel demineralization inhibition.
Physical and mechanical properties were evaluated using tests specified by the International Organization for Standardization (ISO). Concentrations of fluoride, calcium and inorganic phosphate in deionized water (pH 6.9) and lactic acid (pH 4.8) were measured up to five months. Cavities on human extracted molars were prepared, restored with GIC (control), CPP-ACP modified GIC or resin composite, then stored in 50mM lactic acid solution at pH 4.8 for 4 days. Sections of demineralized enamel were examined using polarized light microscopy followed by lesion area measurement.
The incorporation of up to 5% CPP-ACP into Fuji VII decreased the cements' strength and prolonged setting time. However, values remained within ISO limits. The incorporation of 3 or 5% CPP-ACP significantly decreased fluoride release, while higher calcium and inorganic phosphate release occurred. The demineralized enamel area adjacent to GIC with 3 or 5% CPP-ACP was significantly smaller compared to GIC control.
The incorporation of 3% CPP-ACP into GIC has the potential to improve its anticariogenic ability without adversely affecting its mechanical properties.
本研究旨在测量 CPP-ACP 掺入自凝玻璃离子水门汀(GIC)对物理和机械性能、离子释放和抑制牙釉质脱矿的影响。
使用国际标准化组织(ISO)规定的测试方法评估物理和机械性能。在去离子水(pH 值 6.9)和乳酸(pH 值 4.8)中测量氟化物、钙和无机磷酸盐的浓度,最长可达五个月。在人离体磨牙的窝洞中制备、用 GIC(对照)、CPP-ACP 改性 GIC 或树脂复合材料修复,然后在 pH 值 4.8 的 50mM 乳酸溶液中储存 4 天。使用偏光显微镜检查脱矿牙釉质的切片,然后测量病变面积。
将最高达 5%的 CPP-ACP 掺入到 Fuji VII 中会降低水门汀的强度并延长凝固时间。然而,这些值仍在 ISO 限制范围内。掺入 3%或 5% CPP-ACP 可显著减少氟化物的释放,同时会增加钙和无机磷酸盐的释放。与 GIC 对照相比,掺入 3%或 5% CPP-ACP 的 GIC 旁边的脱矿牙釉质面积明显更小。
将 3%的 CPP-ACP 掺入 GIC 有可能提高其抗龋能力,而不会对其机械性能产生不利影响。