Sales-Peres Silvia Helena de Carvalho, Xavier Cheila Nilza Hamina, Mapengo Marta Artemisa Abel, Forim Moacir Rossi, Silva Maria de Fatima, Sales-Peres Arsenio
Universidade de São Paulo, Universidade de São Paulo, Bauru School of Dentistry, Department of Pediatric Dentistry, Orthodontics and Public Health, Bauru SP , Brazil, Universidade de São Paulo - USP, Bauru School of Dentistry, Department of Pediatric Dentistry, Orthodontics and Public Health, Bauru, SP, Brazil.
Universidade Federal de São Carlos, Universidade Federal de São Carlos, Department of Chemistry, Laboratory of Natural Products, São Carlos SP , Brazil, Universidade Federal de São Carlos - UFSCAR, Department of Chemistry, Laboratory of Natural Products, São Carlos, SP, Brazil.
Braz Oral Res. 2016 Jun 14;30(1). doi: 10.1590/1807-3107BOR-2016.vol30.0085.
This study evaluated the effect of Euclea natalensis gel on the reduction of erosive wear with or without abrasion, in enamel and dentin. During two five-day experimental crossover phases, volunteers (n = 10) wore palatal devices containing human enamel and dentin blocks (E = 8 and D = 8). The gel was applied in a thin layer in the experimental group, and was not applied in the control group. In the intraoral phase, volunteers used the palatal appliance for 12 h before the gel treatment, and were instructed to start the erosive challenges 6 h after the gel application. Erosion was performed with Coca-Cola® (for 5 min) 4 times/day. The appliance was then put back into the mouth and was brushed after 30 minutes. After intraoral exposure, the appliances were removed and the specimens were analyzed using profilometry (mean ± SD, μm). The Euclea natalensis gel caused less wear in enamel in the experimental group (EROS = 12.86 ± 1.75 µm; EROS + ABRAS = 12.13 ± 2.12 µm) than in the control group (EROS = 14.12 ± 7.66 µm; EROS + ABRAS = 16.29 ± 10.72 µm); however, the groups did not differ from each other significantly. A statistically significant value was found for erosion and eros + abrasion in dentin (p = 0.001). Euclea natalensis may play a role in the prevention of dentin loss under mild erosive and abrasive conditions. A clinical trial is required to confirm these promising results in a clinical situation.