Comparative evaluation of the mass loss of two composite resins after tooth brushing with abrasive cream
DOI:
https://doi.org/10.33448/rsd-v13i9.46872Keywords:
Composite resin; Tooth abrasion; Toothbrushing; Dentifrices.Abstract
Researchers have improved the quality of composite resins due to the great emphasis being given to aesthetics in the restorative area in relation to the use of restorations in anterior teeth, restoring their natural appearance that meets the demands imposed by patients. Although composite resins still have deficiencies, the search for a material that restores the lost portion of the tooth, bringing it closer to its natural form, is the purpose of research. The objective of this study was to compare in vitro the change in mass loss between nanoparticle composite resin and microparticle composite resin, both subjected to the action of simulated brushing with abrasive toothpaste. They prepared 32 test specimens, 16 of each material, followed the manufacturer's instructions, and then standardized finishing and polishing on all test specimens with continuous hydration. They proceeded to weigh the test specimens three times on a four-digit digital scale with values in grams, obtaining the arithmetic mean of the test specimens of each sample and recording it in a table containing the weights that determined the initial mass of the material examined. Abrasion tests were performed on a brushing machine with toothpaste and water solution, recording 100,000 cycles and a load of 200 g. After the brushing process, the test specimens were weighed again and these values recorded as the final mass. They concluded that after simulated brushing, there was a loss of mass between the two resins; however, the microhybrid resin showed greater wear than the nanoparticle resin.
References
Andrade, I. C. G. B., Silva, B. M., Turssi, C. P., Amaral, F. L. B., Basting, R. T., Souza, E. M. & França, F. M .G. (2021). Effect of whitening dentifrices on color, surface roughness and microhardness of dental enamel in vitro. Am J Dent. 34(6), 300-306.
Bukhari, J. H., Khan, A. S., Ijaz, K., Zahid, S., Chaudhry, A. A. & Kaleem, M. (2021). Low-temperature flow-synthesis-assisted urethane-grafted zinc oxide-based dental composites: physical, mechanical, and antibacterial responses. J Mater Sci Mater Med. 28;32(8), 87.
Campos, D. E. S., Ferreira Muniz, Í. A., Costa, T. K. V .L., Lima, R. B. W., Neppelenbroek, K. H. & Batista A. U. D. (2023). Effect of simulated brushing with dentifrices on surface roughness and the mass loss of acrylic resin: A systematic review and meta-analysis of in vitro studies. J Prosthet Dent. 21, S0022-3913(23)00437-7.
Chacrinha, E. J. B. ., Vale, M. C. S. do ., Pedron, I. G. ., Cordeschi, T., & Shitsuka, C. (2024). Desgaste dentário erosivo: O que devo saber? . E-Acadêmica, 5(1), e0751542. https://doi.org/10.52076/eacad-v5i1.542
Colak, G. & Katirci, G. (2023). In Vitro evaluation of the effects of whitening toothpastes on the color and surface roughness of different composite resin materials. BMC Oral Health. 19;23(1), 580.
Di Fiore, A., Stellini, E., Basilicata, M., Bollero, P. & Monaco, C. (2022). Effect of Toothpaste on the Surface Roughness of the Resin-Contained CAD/CAM Dental Materials: A Systematic Review. J Clin Med. 31;11(3):767.
Domingues, . L. de O. ., Marques, C. L. ., Shitsuka, C., & Stopglia, R. M. M. . (2021). Cirurgia plástica periodontal: gengivectomia e gengivoplastia: Relato de caso clínico . E-Acadêmica, 2(2), e012224. https://doi.org/10.52076/eacad-v2i2.24
Furlan, L., Silva, C. V. M. da, Souza, D. S. de, Borges, A. C. M., Silva, H. D. da, Shitsuka, C., & Imparato, J. C. P. (2020). Tecnologia digital no manejo do desgaste dentário erosivo: relato de caso. Research, Society and Development, 9(8), e684986316. https://doi.org/10.33448/rsd-v9i8.6316
Gil, A. C. (2017). Como Elaborar Projetos De Pesquisa. (6. Ed.). Atlas.
Gholipor, M. & Aboghasemzadeh, F. (2020). Comparison of the effects of whitening and conventional toothpastes on the wear rate of a composite resin. Gen Dent. 68(4), 32-35.
Kobayashi, M., Koi, K., Wiskoski, S., Watanabe, H., Lewis, S. & Ferracane, J. L. (2023). Isolated effect of filler particle size on surface properties of experimental resin composites before and after toothbrush abrasion. J Esthet Restor Dent. 35(8), 1286-1292.
Law, V., Levy, L. C., Morrow, B. R. & Garcia-Godoy, F. (2022). Effect of whitening dentifrices on toothbrush abrasion on composites. Am J Dent. 35(2), 161-164
Malta, D. B. J. ., Souza, G. G. de ., Lopez, J. G. A. ., Pires, M. D. ., Vale, M. C. S. do ., & Costa, D. H. . (2022). Reanatomização do sorriso com uso de resina composta: relato de caso. E-Acadêmica, 3(3), e4933341. https://doi.org/10.52076/eacad-v3i3.341
Maltarollo, T. H., Pedron, I. G., Medeiros, J. M. F., Kubo, H., Martins, J. L., & Shitsuka, C. (2020). A erosão dentária é um problema!. Research, Society and Development, 9(3), e168932723. https://doi.org/10.33448/rsd-v9i3.2723
Miyano, Y., Suzuki, M. & Shinkai, K. (2021). Toothbrush Abrasion of Restorations Fabricated with Flowable Resin Composites with Different Viscosities In Vitro. Materials (Basel). 27;14(21), 6436.
Mondelli, R. F., Garrido, L. M., Soares, A. F., Rodriguez-Medina, A. D., Mondelli, J., Lucena, F. S. & Furuse A. Y. (2022). Effect of simulated brushing on surface roughness and wear of bis-acryl-based materials submitted to different polishing protocols. J Clin Exp Dent. 14(2), e168-e176.
Moraes Rego Roselino, L., Tonani Torrieri, R., Sbardelotto, C., Alves Amorim, A., Noronha Ferraz de Arruda, C., Tirapelli, C. & Carvalho Panzeri Pires-de-Souza, F. (2019). Color stability and surface roughness of composite resins submitted to brushing with bleaching toothpastes: An in situ study. J Esthet Restor Dent. 31(5), 486-492.
Nosouhian, M., Monirifard, M., Gharibpour, F. & Sadeghian, S. (2021). Lingual retainer materials: Comparative evaluation of wear resistance of flowable nanocomposites and universal composite: An in vitro study. Dent Res J (Isfahan). 18, 18:69.
Pereira, A. S., Shitsuka, D. M., Parreira, F. J & Shitsuka, R. (2018). Metodologia da pesquisa científica. [free e-book]. Santa Maria/RS. Ed. UAB/NTE/UFSM. https://www.ufsm.br/app/uploads/sites/358/2019/02/Metodologia-da-Pesquisa-Cientifica_final.pdf E.2)
Pinheiro, C. F. ., Melo, M. P. F. ., Silva, R. R. da ., Pedron, I. G. ., & Shitsuka, C. (2021). Lesões não cariosas: revisão de literatura. E-Acadêmica, 2(2), e042227. https://doi.org/10.52076/eacad-v2i2.27
Priyam, S., Sankeshwari, R., Jalihal, S., Singhal, R., Vyavahare, S. & Ankola, A.V. (2023). Comparative Evaluation of Abrasiveness among Three Dentifrices: An In Vitro Study. Int J Clin Pediatr Dent. 16(2), 264-269.
Shitsuka, C., Shitsuka, R., & Corrêa, M. S. N. P. (2014). Rugosidade superficial das resinas compostas: estética e longevidade clínica. Revista Da Faculdade De Odontologia - UPF, 19(2). https://doi.org/10.5335/rfo.v19i2.3619
Soares, P. M., Dal Piva, A. M. O., Pereira, G. K. R., Valandro, L. F., Rippe, M. P., Feilzer, A. J., Kleverlaan, C. J. & Tribst, J. P. M. (2024). Effect of brushing simulation on the wear behavior of repaired CAD-CAM restorations. Int Dent J. Mar 8, S0020-6539(24)00066-2.
Surya – Dicas e produtos. (2023). O que é CAD/CAM? Saiba o que é essa tecnologia + benefícios.
https://blog.suryadental.com.br/cad-cam/?gad_source=1&gclid=Cj0KCQjw2ou2BhCCARIsANAwM2GfRzecgNpJSkAhPGLgAPHhNTTjS1LPdnnL 1GCpuN12rK NoZQTDtowaAqdQEALw_wcB#O_que_e_CADCAM
Suzuki, M., Miyano, Y., Sato, F, & Shinkai, K. (2023). Surface Properties of Resin Composites and CAD/CAM Blocks After Simulated Toothbrushing. Oper Dent. 48(5), 575-587.
Tărăboanță, I., Stoleriu, S., Gurlui, S., Nica, I., Tărăboanță-Gamen, A. C., Iovan, A. & Andrian, S. (2022). The Influence of Abrasive and Acidic Aggressions on the Surface Condition of Flowable Composite Resin. Materials (Basel). 15(3), 1000.
Ximinis, E., Dionysopoulos, D., Papadopoulos, C., Tournavitis, A., Konstantinidis, A. & Naka, O. (2023). Effect of tooth brushing simulation on the surface properties of various resin-matrix computer-aided design/computer-aided manufacturing ceramics. J Esthet Restor Dent. 35(6), 937-946.
Yu, P., Yang, S. M., Xu, Y. X. & Wang, X. Y. (2023). Surface roughness and gloss alteration of polished resin composites with various filler types after simulated toothbrush abrasion. J Dent Sci. 18(3), 1016-1022.
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