DÃaz-Fabregat, B.; Delbem, A.C.B.; RamÃrez-Carmona, W.; Capalbo, L.C.; Báez-Quintero, L.C.; Sampaio, C.; Hosida, T.Y.; Monteiro, D.R.; Pessan, J.P.
Nanoparticulate Sodium Trimetaphosphate and Fluoride in Gels Affect Enamel Surface Free Energy After Erosive Challenge In Vitro. Pharmaceutics 2025, 17, 1356.
https://doi.org/10.3390/pharmaceutics17101356
AMA Style
DÃaz-Fabregat B, Delbem ACB, RamÃrez-Carmona W, Capalbo LC, Báez-Quintero LC, Sampaio C, Hosida TY, Monteiro DR, Pessan JP.
Nanoparticulate Sodium Trimetaphosphate and Fluoride in Gels Affect Enamel Surface Free Energy After Erosive Challenge In Vitro. Pharmaceutics. 2025; 17(10):1356.
https://doi.org/10.3390/pharmaceutics17101356
Chicago/Turabian Style
DÃaz-Fabregat, Beatriz, Alberto Carlos Botazzo Delbem, Wilmer RamÃrez-Carmona, LetÃcia Cabrera Capalbo, Liliana Carolina Báez-Quintero, Caio Sampaio, Thayse Yumi Hosida, Douglas Roberto Monteiro, and Juliano Pelim Pessan.
2025. "Nanoparticulate Sodium Trimetaphosphate and Fluoride in Gels Affect Enamel Surface Free Energy After Erosive Challenge In Vitro" Pharmaceutics 17, no. 10: 1356.
https://doi.org/10.3390/pharmaceutics17101356
APA Style
DÃaz-Fabregat, B., Delbem, A. C. B., RamÃrez-Carmona, W., Capalbo, L. C., Báez-Quintero, L. C., Sampaio, C., Hosida, T. Y., Monteiro, D. R., & Pessan, J. P.
(2025). Nanoparticulate Sodium Trimetaphosphate and Fluoride in Gels Affect Enamel Surface Free Energy After Erosive Challenge In Vitro. Pharmaceutics, 17(10), 1356.
https://doi.org/10.3390/pharmaceutics17101356