The influence of hydrofluoric acid etching concentration on the prosthetic adhesion of glass ceramics: a systematic review

Authors

DOI:

https://doi.org/10.33448/rsd-v10i2.12093

Keywords:

Acid Etching, Dental; Hydrogen-Ion Concentration; Hydrofluoric Acid; Ceramic; Crowns; Dental Veneers; Adhesiveness; Surface properties.

Abstract

Aim: The aim of this systematic review is to evaluate the influence of the different concentrations of hydrofluoric acid (HF) on the etching of glass ceramics. Materials and Methods: This review searched in vitro studies on the Cochrane Library, Lilacs, PubMed, SciElo, Scopus and Web of Science, using the keywords “Veneers”, “Crowns”, “Ceramics”, “Ceramic”, “Surface Treatments”, “Surface”, “Acid Concentration”, “Hydrofluoric Acid Concentration”, “Adhesion”, “Hydrofluoric Acid”. Studies that investigated the effects of the HF concentration in groups with different concentrations were included. The level of evidence of the selected articles followed the principles of the Oxford Center for Evidence-Based Medicine. This review followed the recommendation of PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-analyzes). In the studies, different types of concentration were used on the ceramics, and, in general, the 5% HF concentration had the best performance. Results: The searching strategy found 151 titles, from which 8 were selected and included in the review. The standards of evaluation included the influence of acid concentration in flexural resistance, surface roughness, contact angle and micro shear resistance. Conclusion: The studies found more negative results in lower concentrations (1% and 3%). In spite of some advantages, the 10% HF also did not present the best results, when compared to 5% HF. Moreover, the concentration should not be seen as the only and most important factor of the quality of ceramics adhesion.

References

Colombo, L.; Gómez, F. & Goes, M. (2019). Bond Strength of CAD/CAM Restorative Materials Treated with Different Surface Etching Protocols. The Journal of Adhesive Dentistry, 21(4), 307-317. https://doi.org/10.3290/j.jad.a42931

Dennerlein, K., Kiesewetter, F., Kilo, S., Jäger, T., Göen, T., Korinth, G., & Drexler, H. (2016). Dermal absorption and skin damage following hydrofluoric acid exposure in an ex vivo human skin model. Toxicology Letters, 248, 25-33. https://doi.org/10.1016/j.toxlet.2016.02.015

Gómes, F.; Dibb, R. & Goes, M. (2018) Effect of Acid Etching on Tridimensional Microstructure of Etchable CAD/CAM Materials. Dental Materials, 34, 944-955. https://doi.org/10.1016/j.dental.2018.03.013

Guyatt, G. H., Oxman, A. D., Vist, G. E., Kunz, R., Falck-Ytter, Y., Alonso-Coello, P., & Schünemann, H. J. (2008). GRADE: an emerging consensus on rating quality of evidence and strength of recommendations. Bmj, 336(7650), 924-926.

Howick, J., Chalmers, I., Glasziou, P., Greenhalgh, T., Heneghan, C., Liberati, A., & Thornton, H. (2011). The 2011 Oxford CEBM evidence levels of evidence (introductory document). Oxford Center for Evidence Based Medicine

Medeiros, A. K. B., Campos, M. F. T. P., Costa R. S. G. S., Melo, L. A., Barbosa, G. A. S., Carreiro, A. F. P. (2019) Improvement in quality of life of elderly edentulous patients with new complete dentures: A systematic review. The International Journal of Prosthodontics, 32, 272-277. https://doi.org/10.11607/ijp.6075

Melo, L. A., Lima, C. M., Ferrarez, L. L., Silva, D. N., Leite, F. P. P. (2020). Precisão da adaptação de próteses totais confeccionadas pela tecnologia CAD/CAM: Uma revisão sistemática. Research, Society and Development, 9 (10), 1-18. http://dx.doi.org/10.33448/rsd-v9i10.9154

Miranda, J. S., Monteiro, J. B., Silva, P. N. F., Valera, M. C., Bresciani, E., & Melo, R. M. (2020). Can different etching protocols change the properties of a hybrid ceramic? General dentistry, 20-25. https://agd.org/generaldentistry

Missau, T., Venturini, A. B., Pereira, G. K. R., Prochnow, C., Valandro, L. F., & Rippe, M. P. (2018). Fatigue failure load of restored premolars: effect of etching the intaglio surface of ceramic inlays with hydrofluoric acid at different concentrations. Operative dentistry, 43 (2), 81-91. https://doi.org/10.2341/16-345-L

Moher, D., Liberati, A., Tetzlaff, J., Altman, D. G., & Prisma Group. (2009). Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. PLoS med, 6(7), e1000097.

Mokhtarpour, F.; Alaghehmand, H. & Khafri, S. (2017) Effect of Hydrofluoric Acid Surface Treatments on Micro-Shear Bond Strength of CAD/CAM ceramics. Electronic Physician., 9(10), 5487-5493. https://dx.doi.org/10.19082/5487

Moura, D. M. D., Araújo, A. M. M. D., Souza, K. B. D., Veríssimo, A. H., & Tribst, J. P. M. (2020). Hydrofluoric acid concentration, time and use of phosphoric acid on the bond strength of feldspathic ceramics. Brazilian Oral Research, 34(18), 1-10. https://doi.org/10.1590/1807-3107bor-2020.vol34.0018

Moura, D. M. D., Carvalho, I. H. G., Silva, S. E. G., Araújo, G. M., Vila-Nova, T. E. L., Silva, N. R., Souza, K. B., Miranda, L. M. & Souza, R. O. A. (2019) Cimentação Adesiva em Cerâmicas Vítrias: condicionamento e limpeza pós condicionamento: Parte II. Prótese News, 6(5), 578-590.

Özcan, M.; Allahbeickaraghi, A. & Dündar, M. (2012) Possible hazardous effects of hydrofluoric acid and recommendations for treatment approach: a review. Clinical Oral Investigation, 16, 15-23. https://doi.org/10.1007/s00784-011-0636-6

Pereira A.S. et al. (2018). Metodologia da pesquisa científica. UAB/NTE/UFSM. https://repositorio.ufsm.br/bitstream/handle/1/15824/Lic_Computacao_Metodologia-Pesquisa-Cientifica.pdf?sequence=1.

Prochnow, C., Pereira, G., Venturini, A., Scherer, M., Rippe, M., Bottino, M., Kleverlaan, C. & Valandro, L. (2018) How Does Hydrofluoric Acid Etching Affect the Cyclic Load-to-Failure of Lithium Disilicate Restorations? Journal of the Mechanical Behavior of Biomedical Materials, 87, 306-311. https://doi.org/10.1016/j.jmbbm.2019.07.040

Prochnow, C., Venturini A., Grasel, R, Gundel, A., Bottino, M. & Valandro, L. (2018). Adhesion to a Lithium Disilicate Glass Ceramic Etched with Hudrofluoric Acid at Distinct Concentrations. Brazilian Dental Journal, 29(5), 492-499. https://dx.doi.org/10.1590/0103-6440201802080

Prochnow, C., Venturini, A. B., Guilardi, L. F., Pereira, G. K. R., Burgo, T. A. L., Bottino, M. C., Kleverlaan, C. J. & Valandro, L. F. (2018). Hydrofluoric acid concentrations: effect on the cyclic load-to-failure of machined lithium disilicate restorations. Dental Materials, 34(9), 255-263. https://doi.org/10.1016/j.dental.2018.06.028

Puppin-Rontani, J., Sundfeld, D., Costa, A. R., Correr, A. B., Puppin-Rontani, R. M., Borges, G. A., Sinhoreti M. A. C. & Correr-Sobrinho, L. (2017). Effect of hydrofluoric acid concentration and etching time on bond strength to lithium disilicate glass ceramic. Operative Dentistry, 42(6), 606-615. https://doi.org/10.2341/16-215-L

Saracoglu, A., Özcan, M., Kumbuloglu, O., & Turkun, M. (2011). Adhesion of resin composite to hydrofluoric acid-exposed enamel and dentin in repair protocols. Operative dentistry, 36(5), 545-553. https://doi.org/10.2341/10-312-L

Souza, R. & Bottino, M.A. (2018) Cimentação Adesiva em Próteses Cerâmicas: O Que Realmente eu Preciso Saber? Prótese News, 5(5), 516-531.

Sudré, J. P., Salvio, L. A., Baroudi, K., Sotto-Maior, B. S., Melo-Silva, C. L., & Assis, N. M. S. P. (2020). Influence of Surface Treatment of Lithium Disilicate on Roughness and Bond Strength. The International Journal od Prosthodontics, 33, 212-216. https://doi.org/10.11607/ijp.6453

Sundfeld Neto, D., Naves, L. Z., Costa, A. R., Correr, A. B., Consani, S., Borges, G. A., & Correr-Sobrinho, L. (2015). The effect of hydrofluoric acid concentration on the bond strength and morphology of the surface and interface of glass ceramics to a resin cement. Operative dentistry, 40(5), 470-479. https://doi.org/10.2341/14-133-L

Tribst, J. P. M., Dal Piva, A. M. D. O., Lopes, G. C., Borges, A. L. S., Bottino, M. A., Özcan, M., & de Melo, R. M. (2020). Biaxial flexural strength and Weilbull characteristics of adhesively luted hybrid and reinforced CAD/CAM materials to dentin: effect of self-etching ceramic primer versus hydrofluoric acid etching. Journal of Adhesion Science and Technology, 34(12), 1253-1268. https://doi.org/10.1080/01694243.2019.1710991

Venturini, A. B., Prochnow, C., May, L. G., Bottino, M. C., & Valandro, L. F. (2015). Influence of hydrofluoric acid concentration on the flexural strength of a feldspathic ceramic. Journal of the Mechanical Behavior of Biomedical Materials, 48, 241-248. http://dx.doi.org/10.1016/j.jmbbm.2015.03.025

Venturini, A. B., Prochnow, C., May, L. G., Kleverlaan, C. J., & Valandro, L. F. (2018). Fatigue failure load of feldspathic ceramic crowns after hydrofluoric acid etching at different concentrations. The Journal of prosthetic dentistry, 119(2), 278-285. https://doi.org/10.1016/j.prosdent.2017.03.021

Venturini, A. B., Prochnow, C., Pereira, G. K., Werner, A., Kleverlaan, C. J., & Valandro, L. F. (2018). The effect of hydrofluoric acid concentration on the fatigue failure load of adhesively cemented feldspathic ceramic discs. Dental Materials, 34(4), 667-675. https://doi.org/10.1016/j.dental.2018.01.010

Venturini, A. B., Prochnow, C., Rambo, D., Gundel, A., & Valandro, L. F. (2015). Effect of hydrofluoric acid concentration on resin adhesion to a feldspathic ceramic. The Journal of Adhesive Dentistry, 17(4), 313-200. https://doi.org/10.3290/j.jad.a34592

Veríssimo, A. H., Moura, D. M. D., Tribst, J. P. M., Araújo, A. M. M. D., & Leite, F. P. P. (2019). Effect of hydrofluoric acid concentration and etching time on resin-bond strength to different glass ceramics. Brazilian oral research, 33, 1-11. https://doi.org/10.1590/1807-3107bor-2019.vol33.0041

Vila-Nova, T., Silva, N. R., Moura, D. M. D. M., Araújo, G. M., Miranda, L. M., Carvalho, I. H. G., Souxa, K. B., Silva, S. E. G. & Souza, R. O. A. (2019) Cimentação Adesiva em Cerâmicas Vítrias: condicionamento e limpeza pós condicionamento: Parte I. Prótese News, 6 (5), 578-590.

Published

04/02/2021

How to Cite

CARDOSO, M. S. .; FARIA, L. F. de .; LIMA, C. M.; LEITE, F. P. P. .; MELO, L. A. de . The influence of hydrofluoric acid etching concentration on the prosthetic adhesion of glass ceramics: a systematic review . Research, Society and Development, [S. l.], v. 10, n. 2, p. e7810212093, 2021. DOI: 10.33448/rsd-v10i2.12093. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/12093. Acesso em: 18 nov. 2024.

Issue

Section

Health Sciences