Biofilm Adhesion and Micromorphology Analysis after Professional Oral Hygiene Procedures on CAD/CAM Milled and Veneered Zirconia Restorations: In Vitro Study
Abstract
:1. Introduction
2. Materials and Methods
Sample Preparation
- 0-
- no treatment (control samples).
- a-
- exposed to ultrasonic scaling (with a ultrasonic scaler incorporated in a dental unit) for one minute.
- b-
- exposed to brushing with a professional dental polishing nylon brush (Flat type) and abrasive paste (Super Polish, Kerr) for one minute.
3. Surface Characteristics of Zirconia Surface
Statistical Analysis
4. Results
4.1. SEM Imaging
4.2. Biofilm Formation on Different Zirconia Samples
5. Discussion
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Gomes, A.L.; Montero, J. Zirconia implant abutments: A review. Med. Oral Patol. Oral Cir. Bucal. 2011, 16, e50–e55. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Piconi, C.; Maccauro, G. Zirconia as a ceramic biomaterial. Biomaterials 1999, 20, 1–25. [Google Scholar] [CrossRef] [PubMed]
- Hisbergues, M.; Vendeville, S.; Vendeville, P. Zirconia: Established facts and perspectives for a biomaterial in dental implantology. J. Biomed. Mater. Res. Part B Appl. Biomater. 2009, 88, 519–529. [Google Scholar] [CrossRef] [PubMed]
- Lee, B.C.; Jung, G.Y.; Kim, D.J.; Han, J.S. Initial bacterial adhesion on resin, titanium and zirconia in vitro. J. Adv. Prosthodont. 2011, 3, 81–84. [Google Scholar] [CrossRef] [Green Version]
- Saravi, B.; Vollmer, A.; Hartmann, M.; Lang, G.; Kohal, R.-J.; Boeker, M.; Patzelt, S.B.M. Clinical Performance of CAD/CAM All-Ceramic Tooth-Supported Fixed Dental Prostheses: A Systematic Review and Meta-Analysis. Materials 2021, 14, 2672. [Google Scholar] [CrossRef]
- Carvalho, I.F.A.; Santos Marques, T.M.S.; Araújo, F.M.; Azevedo, L.F.; Donato, H.; Correia, A. Clinical Performance of CAD/CAM Tooth-Supported Ceramic Restorations: A Systematic Review. Int. J. Periodontics Restor. Dent. 2018, 38, e68–e78. [Google Scholar] [CrossRef]
- Vitti, R.P.; Catelan, A.; Amaral, M.; Pacheco, R.R. Zirconium in dentistry. In Advanced Dental Biomaterials; Woodhead Publishing: Sawston, UK, 2019; pp. 317–345. [Google Scholar]
- Cantner, F.; Cacaci, C.; Mücke, T.; Randelzhofer, P.; Hajtó, J.; Beuer, F. Clinical performance of tooth- or implant-supported veneered zirconia single crowns: 42-month results. Clin. Oral Investig. 2019, 23, 4301–4309. [Google Scholar] [CrossRef]
- de Matos, J.D.M.; Lopes, G.R.S.; Queiroz, D.A.; Nakano, L.J.N.; Ribeiro, N.C.R.; Barbosa, A.B.; Anami, L.C.; Bottino, M.A. Dental Ceramics: Fabrication Methods and Aesthetic Characterization. Coatings 2022, 12, 1228. [Google Scholar] [CrossRef]
- Vieira Colombo, A.P.; Magalhães, C.B.; Hartenbach, F.A.; Martins do Souto, R.; Maciel da Silva-Boghossian, C. Periodontal-disease-associated biofilm: A reservoir for pathogens of medical importance. Microb. Pathog. 2016, 94, 27–34. [Google Scholar] [CrossRef]
- Offenbacher, S.; Barros, S.P.; Singer, R.E.; Moss, K.; Williams, R.C.; Beck, J.D. Periodontal disease at the biofilm–gingival interface. J. Periodontol. 2007, 78, 1911–1925. [Google Scholar] [CrossRef]
- Heitz-Mayfield, L.J.; Lang, N.P. Comparative biology of chronic and aggressive periodontitis vs.peri-implantitis. Periodontology 2010, 53, 167–181. [Google Scholar] [CrossRef]
- Pita, P.P.C.; Rodrigues, J.A.; Ota-Tsuzuki, C.; Miato, T.F.; Zenobio, E.G.; Giro, G.; Figueiredo, L.C.; Gonçalves, C.; Gehrke, S.A.; Cassoni, A. Oral streptococci biofilm formation on different implant surface topographies. BioMed Res. Int. 2015, 2015, 159625. [Google Scholar] [CrossRef]
- Li, J.; Helmerhorst, E.J.; Leone, C.W.; Troxler, R.F.; Yaskell, T.; Haffajee, A.D.; Socransky, S.S.; Oppenheim, F.G. Identification of early microbial colonizers in human dental biofilm. J. Appl. Microbiol. 2004, 97, 1311–1318. [Google Scholar] [CrossRef]
- Øilo, M.; Bakken, V. Biofilm and dental biomaterials. Materials 2015, 8, 2887–2900. [Google Scholar] [CrossRef]
- Cinquini, C.; Alfonsi, F.; Marchio, V.; Gallo, F.; Zingari, F.; Bolzoni, A.R.; Romeggio, S.; Barone, A. The Use of Zirconia for Implant-Supported Fixed Complete Dental Prostheses: A Narrative Review. Dent. J. 2023, 11, 144. [Google Scholar] [CrossRef]
- Hjerppe, J.; Rodas, S.; Korvala, J.; Pesonen, P.; Kaisanlahti, A.; Özcan, M.; Suojanen, J.; Reunanen, J. Surface Roughness and Streptococcus mutans Adhesion on Metallic and Ceramic Fixed Prosthodontic Materials after Scaling. Materials 2021, 14, 1027. [Google Scholar] [CrossRef]
- Jaeggi, M.; Gyr, S.; Astasov-Frauenhoffer, M.; Zitzmann, N.U.; Fischer, J.; Rohr, N. Influence of different zirconia surface treatments on biofilm formation in vitro and in situ. Clin. Oral Implants Res. 2022, 33, 424–432. [Google Scholar] [CrossRef]
- Chen, H.L.; Yang, S.; Yu, P.; Wu, J.; Guan, H.; Wu, Z. Comparison of bacterial adhesion and biofilm formation on zirconia fabricated by two different approaches: An in vitro and in vivo study. Adv. Ceram. Dent. Struct. Funct. Bioceram. 2020, 119, 323–331. [Google Scholar] [CrossRef]
- Alves, L.M.M.; Contreras, L.P.C.; Bueno, M.G.; Campos, T.M.B.; Bresciani, E.; Valera, M.C. The wear performance of glazed and polished full contour zirconia. Braz. Dent. J. 2019, 30, 511–518. [Google Scholar] [CrossRef] [Green Version]
- Tunkel, J.; Heinecke, A.; Flemmig, T.F. A systematic review of efficacy of machine-driven and manual subgingival debridement in the treatment of chronic periodontitis. J. Clin. Periodontol. 2002, 29 (Suppl. S3), 72–81. [Google Scholar] [CrossRef]
- Ivanovic, V.; Popovic, D.; Petrovic, S.; Rudolf, R.; Majerič, P.; Lazarevic, M.; Djordjevic, I.; Lazic, V.; Radunovic, M. Unraveling the Antibiofilm Activity of a New Nanogold Resin for Dentures and Epithesis. Pharmaceutics 2022, 14, 1513. [Google Scholar] [CrossRef] [PubMed]
- Brugger, S.D.; Baumberger, C.; Jost, M.; Jenni, W.; Brugger, U.; Mühlemann, K. Automated Counting of Bacterial Colony Forming Units on Agar Plates. PLoS ONE 2012, 7, e33695. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nakazawa, K.; Nakamura, K.; Harada, A.; Shirato, M.; Inagaki, R.; Örtengren, U.; Kanno, T.; Niwano, Y.; Egusa, H. Surface properties of dental zirconia ceramics affected by ultrasonic scaling and low-temperature degradation. PLoS ONE 2018, 13, e0203849. [Google Scholar] [CrossRef]
- Zupancic Cepic, L.; Dvorak, G.; Piehslinger, E.; Georgopoulos, A. In vitro adherence of Candida albicans to zirconia surfaces. Oral Dis. 2020, 26, 1072–1080. [Google Scholar] [CrossRef] [Green Version]
- Lee, W.F.; Iwasaki, N.; Peng, P.W.; Takahashi, H. Effect of toothbrushing on the optical properties and surface roughness of extrinsically stained high-translucency zirconia. Clin. Oral Investig. 2022, 26, 3041–3048. [Google Scholar] [CrossRef] [PubMed]
- Lee, J.H.; Kim, S.H.; Han, J.S.; Luke Yeo, I.S.; Yoon, H.I.; Lee, J. Effects of ultrasonic scaling on the optical properties and surface characteristics of highly translucent CAD/CAM ceramic restorative materials: An in vitro study. Ceram. Int. 2019, 45, 14594–14601. [Google Scholar] [CrossRef]
- Yoon, H.I.; Noh, H.M.; Park, E.J. Surface changes of metal alloys and high-strength ceramics after ultrasonic scaling and intraoral polishing. J. Adv. Prosthodont. 2017, 9, 188–194. [Google Scholar] [CrossRef] [Green Version]
- Sulaiman, T.A.; Camino, R.N.; Cook, R.; Delgado, A.J.; Roulet, J.F.; Clark, W.A. Time-lasting ceramic stains and glaze: A toothbrush simulation study. J. Esthet. Restor. Dent. 2020, 32, 581–585. [Google Scholar] [CrossRef]
- Fiorin, L.; Oliveira, P.E.B.S.; Silva AOd Faria, A.C.L.; Macedo, A.P.; Ribeiro, R.F.; Rodrigues, R.C.S. Wear Behavior of Monolithic Zirconia after Staining, Glazing, and Polishing Opposing Dental Restorative Materials: An In Vitro Study. Coatings 2023, 13, 466. [Google Scholar] [CrossRef]
- Yuan JC, C.; Barão VA, R.; Wee, A.G.; Alfaro, M.F.; Afshari, F.S.; Sukotjo, C. Effect of brushing and thermocycling on the shade and surface roughness of CAD-CAM ceramic restorations. J. Prosthet. Dent. 2018, 119, 1000–1006. [Google Scholar] [CrossRef]
- Kreve, S.; Dos Reis, A.C. Effect of surface properties of ceramic materials on bacterial adhesion: A systematic review. J. Esthet. Restor. Dent. 2022, 34, 461–472. [Google Scholar] [CrossRef] [PubMed]
- O’Toole, G.; Kaplan, H.B.; Kolter, R. Biofilm Formation as Microbial Development. Annu. Rev. Microbiol. 2000, 54, 49–79. [Google Scholar] [CrossRef]
- Engel, A.S.; Kranz, H.T.; Schneider, M.; Tietze, J.P.; Piwowarcyk, A.; Kuzius, T.; Arnold, W.; Naumova, E.A. Biofilm formation on different dental restorative materials in the oral cavity. BMC Oral Health 2020, 20, 162. [Google Scholar] [CrossRef] [PubMed]
- Song, F.; Koo, H.; Ren, D. Effects of material properties on bacterial adhesion and biofilm formation. J. Dent. Res. 2015, 94, 1027–1034. [Google Scholar] [CrossRef] [PubMed]
- Karygianni, L.; Jähnig, A.; Schienle, S.; Bernsmann, F.; Adolfsson, E.; Kohal, R.J.; Chevalier, J.; Hellwig, E.; Al-Ahmad, A. Initial Bacterial Adhesion on Different Yttria-Stabilized Tetragonal Zirconia Implant Surfaces in Vitro. Materials 2013, 6, 5659–5674. [Google Scholar] [CrossRef] [Green Version]
- Dal Piva, A.M.O.; Contreras, L.P.C.; Ribeiro, F.C.; Anami, L.C.; Camargo, S.E.A.; Jorge, A.O.C.; Bottino, M.A. Monolithic Ceramics: Effect of Finishing Techniques on Surface Properties, Bacterial Adhesion and Cell Viability. Oper. Dent. 2018, 43, 315–325. [Google Scholar] [CrossRef]
- de Carvalho, I.H.G.; da Silva, N.R.; Vila-Nova, T.E.L.; de Fatima, D.; de Almeida, L.; Veríssimo, A.H.; de Melo, R.M.; Zhang, Y.; de Assunção, E.; Souza, R.O. Effect of finishing/polishing techniques and aging on topography, C. albicans adherence, and flexural strength of ultra-translucent zirconia: An in situ study. Clin. Oral Investig. 2022, 26, 889–900. [Google Scholar] [CrossRef]
- Han, A.; Tsoi, J.K.-H.; Matinlinna, J.P.; Chen, Z. Influence of Grit-Blasting and Hydrofluoric Acid Etching Treatment on Surface Characteristics and Biofilm Formation on Zirconia. Coatings 2017, 7, 130. [Google Scholar] [CrossRef] [Green Version]
- Lee, D.H.; Mai, H.N.; Thant, P.P.; Hong, S.H.; Kim, J.; Jeong, S.M.; Lee, K.W. Effects of different surface finishing protocols for zirconia on surface roughness and bacterial biofilm formation. J. Adv. Prosthodont. 2019, 11, 41–47. [Google Scholar] [CrossRef] [Green Version]
Samples Name | Samples Code | |
---|---|---|
veneered zirconia | Polished | F1 |
Polished, treated with ultrasonic scaling | F1a | |
Polished, treated with brushing | F1b | |
Glazed | F2 | |
Glazed, treated with ultrasonic scaling | F2a | |
Glazed, treated with brushing | F2b | |
CAD/CAM milled zirconia | Polished | C1 |
Polished, treated with ultrasonic scaling | C1a | |
Polished, treated with brushing | C1b | |
Glazed | C2 | |
Glazed, treated with ultrasonic scaling | C2a | |
Glazed, treated with brushing | C2b |
Samples | Mean Values (µm) |
---|---|
F1 | 19.73 |
F1a | 55.59 |
F1b | 17.97 |
F2 | 25.78 |
F2a | 88.31 |
F2b | 21.92 |
C1 | 17.57 |
C1a | 19.07 |
C1b | 27.74 |
C2 | 23.5 |
C2a | 45.38 |
C2b | 12.25 |
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Perić, M.; Čairović, A.; Špadijer Gostović, A.; Stanimirović, D.; Kostić, M.; Ivanov, M.; Ćirić, A.; Glamočlija, J.; Pavlović, V.B. Biofilm Adhesion and Micromorphology Analysis after Professional Oral Hygiene Procedures on CAD/CAM Milled and Veneered Zirconia Restorations: In Vitro Study. Appl. Sci. 2023, 13, 8389. https://doi.org/10.3390/app13148389
Perić M, Čairović A, Špadijer Gostović A, Stanimirović D, Kostić M, Ivanov M, Ćirić A, Glamočlija J, Pavlović VB. Biofilm Adhesion and Micromorphology Analysis after Professional Oral Hygiene Procedures on CAD/CAM Milled and Veneered Zirconia Restorations: In Vitro Study. Applied Sciences. 2023; 13(14):8389. https://doi.org/10.3390/app13148389
Chicago/Turabian StylePerić, Mirjana, Aleksandra Čairović, Aleksandra Špadijer Gostović, Dragan Stanimirović, Marina Kostić, Marija Ivanov, Ana Ćirić, Jasmina Glamočlija, and Vladimir B. Pavlović. 2023. "Biofilm Adhesion and Micromorphology Analysis after Professional Oral Hygiene Procedures on CAD/CAM Milled and Veneered Zirconia Restorations: In Vitro Study" Applied Sciences 13, no. 14: 8389. https://doi.org/10.3390/app13148389
APA StylePerić, M., Čairović, A., Špadijer Gostović, A., Stanimirović, D., Kostić, M., Ivanov, M., Ćirić, A., Glamočlija, J., & Pavlović, V. B. (2023). Biofilm Adhesion and Micromorphology Analysis after Professional Oral Hygiene Procedures on CAD/CAM Milled and Veneered Zirconia Restorations: In Vitro Study. Applied Sciences, 13(14), 8389. https://doi.org/10.3390/app13148389