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Resin-modified glass ionomer containing calcium glycerophosphate: physico-mechanical properties and enamel demineralization

机译:含甘油磷酸钙的树脂改性玻璃离聚物:物理力学性能和搪瓷脱盐

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摘要

Sources of calcium and phosphate have been added to dental restorative materials to improve their anticaries effect. Objective This study evaluated the effect of adding calcium glycerophosphate (CaGP) to resin-modified glass ionomer cement (RMGIC) on the physico-mechanical properties, ion release, and enamel demineralization. Material and Methods: Specimens were fabricated for each experimental group: RMGIC without CaGP (Control), RMGIC with 1, 3 and 9% CaGP. To determine the release of fluoride (F), calcium (Ca) and phosphorus (P), six specimens were immersed in demineralization and remineralization solutions for 15 days. In another experimental trial, the following physico-mechanical properties were evaluated at time intervals of 1 and 7 days after fabrication: compressive strength (n=12), diametral tensile strength (n=12), surface hardness of material (n=6) and the degree of conversion of monomers (n=8). To study enamel demineralization, specimens (n=12) were attached to enamel blocks and submitted to pH-cycling. Subsequently, surface and cross-sectional hardness and the concentration of F, Ca and P in enamel were determined.
机译:钙和磷酸盐的来源已添加到牙齿修复材料中,以改善其防龋效果。目的本研究评估了在树脂改性的玻璃离聚物水泥(RMGIC)中添加甘油磷酸钙(CaGP)对物理力学性能,离子释放和搪瓷脱矿的影响。材料和方法:为每个实验组制作样品:不含CaGP的RMGIC(对照),含1%,3%和9%CaGP的RMGIC。为了确定氟化物(F),钙(Ca)和磷(P)的释放,将六个样品浸入去矿物质和再矿化溶液中15天。在另一项试验中,在制造后的1天和7天的时间间隔内评估了以下物理机械性能:抗压强度(n = 12),径向抗张强度(n = 12),材料的表面硬度(n = 6)单体的转化度(n = 8)。为了研究牙釉质的脱矿质,将标本(n = 12)附着在牙釉质块上并进行pH循环。随后,测定搪瓷的表面和横截面硬度以及F,Ca和P的浓度。

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