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Showing 2 results for Kharazifard

F Ghorbani, Sh Pourhaghani, H Heshmat, Sh Jalalian, Mj Kharazifard,
Volume 7, Issue 2 (3-2022)
Abstract

Background and Aim: This study evaluated the effect of pomegranate peel and green tea extracts on shear bond strength (SBS) of a microhybrid composite to bleached enamel.
Materials and Methods: In this in vitro, experimental study, 44 maxillary premolars were divided into 4 groups of control A (composite cylinders bonded to teeth without bleaching), group B (composite bonding immediately after bleaching), group C (5 g of green tea extract was dissolved in 100 mL of distilled water, applied for 10 minutes, and rinsed for 30 seconds, followed by bleaching and composite bonding) and group D (5 g of pomegranate peel extract was dissolved in 100 mL of distilled water; the rest was similar to group C). In groups B, C and D, 35% hydrogen peroxide was applied on the teeth for 20 minutes and rinsed. This process was repeated two more times. The teeth were etched with 35% phosphoric acid for 15 seconds and rinsed for 15 seconds. A microhybrid composite was applied in Tygon tubes, bonded to the teeth with single Bond, and light-cured. Mode of failure was also determined. SBS was measured by a universal testing machine and data were analyzed by one-way ANOVA and Tukey’s test.
Results: A statistically significant difference was found in the mean SBS of the groups (P<0.001). The mean SBS of group B (not treated with antioxidant after bleaching) was significantly lower than that in other groups (P<0.05).
Conclusion: Application of 5% pomegranate peel and green tea extracts increase the SBS of composite to bleached enamel.


H Heshmat, M Hoorizad Ganjkar, N Sanaei, Sf Tabatabaei, Mj Kharazifard,
Volume 7, Issue 3 (7-2022)
Abstract

Background and Aim: This study aimed to compare the sorption and solubility properties of ACTIVA BioACTIVE liner and resin modified glass ionomer (RMGI).  
Materials and Methods: In this in vitro study, a total of 30 samples were fabricated from each liner measuring 15 mm in diameter and 1 mm in thickness according to ISO 2009:4049. They were then divided into 6 subgroups (n=5) to assess their water solubility after 1 week and 8 weeks, water sorption after 1 week and 8 weeks, and acid solubility after 1 week and 8 weeks. The samples were then weighed, and placed in vials containing artificial saliva or lactic acid and incubated at 37°C for 1 week or 8 weeks according to specimen grouping. Afterwards, each specimen was weighed again. Sorption and solubility were calculated according to difference in weight of the samples. Data were analyzed by two-way ANOVA(alpha=0.05).
Results: RMGI showed greater water solubility and sorption compared with ACTIVA BioACTIVE liner after 1 week of storage (P=0.00). No significant difference was found in water solubility (P=0.64) and sorption (P=0.15) after 8 weeks of storage. There was no significant difference in acid solubility of RMGI and ACTIVA BioACTIVE liner after 1 week (P=0.30) or 8 weeks of storage (P=0.60)
Conclusion: Water sorption and solubility of RMGI were greater than those of ACTIVA BioACTIVE within the first week after setting but they were similar in long-term assessment. RMGI and ACTIVA BioACTIVE were not different in terms of acid resistance.


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