Title of article :
Preventing erosion with novel agents
Author/Authors :
Wang، نويسنده , , X. and Megert، نويسنده , , B. and Hellwig، نويسنده , , Mariano E. and Neuhaus، نويسنده , , K.W. and Lussi، نويسنده , , A.، نويسنده ,
Pages :
8
From page :
163
To page :
170
Abstract :
Objectives n vitro study aimed to investigate the protective effect of four commercial novel agents against erosion. s human molars were distributed into 9 groups, and after incubation in human saliva for 2 h, a pellicle was formed. Subsequently, the specimens were submitted to demineralization (orange juice, pH 3.6, 3 min) and remineralization (paste slurry containing one of the tested novel agents, 3 min) cycles, two times per day, for 4 days. The tested agents were: (1) DenShield Tooth; active ingredient: 7.5% W/W NovaMin® (calcium sodium phosphosilicate); (2) Nanosensitive hca; active ingredient: 7.5% W/W NovaMin®; (3) GC Tooth Mousse; active ingredient: 10% Recaldent™ (CPP-ACP); (4) GC MI Paste Plus; active ingredients: 10% Recaldent™, 900 ppm fluoride. Two experimental procedures were performed: in procedure 1, the tested agents were applied prior to the erosive attack, and in procedure 2 after the erosive attack. A control group receiving no prophylactic treatment was included. Surface nanohardness (SNH) of enamel specimens was measured after pellicle formation and after completion of daily cyclic treatment. s gnificantly decreased at the end of the experiment for all groups (p < 0.05). In both procedures, there was no statistically significant difference between the control group and those treated with paste slurries (p > 0.05). In addition, the changes in SNH (ΔSNH = SNHbaseline − SNHfinal) did not show statistically significant difference between both procedures (p > 0.05). sion erosion cannot be prevented or repaired by these novel agents, regardless of fluoride content.
Keywords :
erosion , fluoride , Recaldent , Prevention , NovaMin
Journal title :
Astroparticle Physics
Record number :
2039032
Link To Document :
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