Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The paper aims to investigate the effect of various types of mouthwashes on changes in the colour of dental nanocomposite in studies simulating their long-term contact. The hypothesis was that the offered Mouthwashes are safe in terms of maintaining a high level of aesthetics of composite nanomaterials used for direct fillings. Design/methodology/approach The composite nanomaterial was subjected to simulated ageing in twelve different types of mouthwash with different chemical compositions and distilled water. Three exposure times were used, corresponding to two, four- and six-year periods of use. Colour measurements were carried out after each exposure time, and the colour change expressed by ΔE* and particular coordinates (ΔL*, Δa*, Δb*) were determined. The results were subjected to statistical analyses. Findings Most patients diagnosed with TMD experienced traumatic events in childhood, while no similar cases were reported in the control group. Significant asymmetry was also found in the TMD group. The gender of the patients did not influence the asymmetries. There was no correlation between the age of the patients and the asymmetry in patients with TMD. Still, the correlation occurred in the control group due to significant asymmetries for the youngest patients. The results were subjected to statistical analyses. Research limitations/implications The simulated exposure is a simplification compared to clinical conditions, where the contact of the material with the fluid is cyclical, and the material is exposed to many other destructive factors. Practical implications Mouthwashes are widely used chemotherapeutic agents, and composite materials are used in the oral cavity of most of the population. One of the basic advantages of dental composites is their high aesthetics, for which the possibility of obtaining the desired colour and its stability is a fundamental issue. Originality/value Research shows that mouthwashes cause discolouration, but they are acceptable. However, caution is recommended in the case of mouthwashes containing charcoal, which have not been analysed in this respect so far.
Wydawca
Rocznik
Tom
Strony
131--140
Opis fizyczny
Bibliogr. 35 poz., tab., wykr.
Twórcy
autor
- Materials Research Laboratory, Faculty of Mechanical Engineering, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
- Tor Tegnander Dental Clinic, Tollbugata 10, 8006 Bodø, Norway
Bibliografia
- [1] R. Mandhalkar, P. Paul, A. Reche, Application of Nanomaterials in Restorative Dentistry, Cureus 15/1 (2023) e33779. DOI: https://doi.org/10.7759/cureus.33779
- [2] L. Hardan, R. Bourgi, C.E. Cuevas-Suárez, M. Zarow, N. Kharouf, D. Mancino, C.F. Villares, D. Skaba, M. Lukomska-Szymanska, The Bond Strength and Antibacterial Activity of the Universal Dentin Bonding System: A Systematic Review and Meta-Analysis, Microorganisms 9/6 (2021) 1230. DOI: https://doi.org/10.3390/microorganisms9061230
- [3] H. Iftekhar, 9 - Nanocomposite restorative materials for dental caries management, in: A.M. Asiri, Inamuddin, A. Mohammad (eds), Applications of Nanocomposite Materials in Dentistry, Woodhead Publishing, 2019, 161-169. DOI: https://doi.org/10.1016/B978-0-12-813742-0.00009-2
- [4] S. Gömleksiz, O. Gömleksiz, The effect of contemporary finishing and polishing systems on the surface roughness of bulk fill resin composite and nanocomposites, Journal of Esthetic and Restorative Dentistry 34/6 (2022) 915-923. DOI: https://doi.org/10.1111/jerd.12874
- [5] E. Azmy, M.R.Z. Al-Kholy, M. Fattouh, L.M.M. Kenawi, M.A. Helal, Impact of Nanoparticles Additions on the Strength of Dental Composite Resin, International Journal of Biomaterials 2022 (2022) 1165431. DOI: https://doi.org/10.1155/2022/1165431
- [6] S. Althahban, A.S. Alomari, H. El-Din M. Sallam, Y. Jazaa, An investigation of wear, mechanical, and water sorption/solubility behaviors of a commercial restorative composite containing nano-additives, Journal of Materials Research and Technology 23 (2023) 491-502. DOI: https://doi.org/10.1016/j.jmrt.2023.01.025
- [7] Z. Khurshid, M. Zafar, S. Qasim, S. Shahab, M. Naseem, A. AbuReqaiba, Advances in Nanotechnology for Restorative Dentistry, Materials 8/2 (2015) 717-731. DOI: https://doi.org/10.3390/ma8020717
- [8] S.A. Saunders, Current practicality of nanotechnology in dentistry. Part 1: Focus on nanocomposite restoratives and biomimetics, Clinical, Cosmetic and Investigational Dentistry 1 (2009) 47-61.
- [9] M. Saridou, A.K. Nikolaidis, E.A. Koulaouzidou, D.S. Achilias, Synthesis and Characterization of Dental Nanocomposite Resins Reinforced with Dual Organomodified Silica/Clay Nanofiller Systems, Journal of Functional Biomaterials 14/8 (2023) 405. DOI: https://doi.org/10.3390/jfb14080405
- [10] M.B. Blatz, G. Chiche, O. Bahat, R. Roblee, C. Coachman, H.O. Heymann, Evolution of Aesthetic Dentistry, Journal of Dental Research 98/12 (2019) 1294-1304. DOI: https://doi.org/10.1177/0022034519875450
- [11] J.C. Wu, Nanocomposites provide reliability and aesthetics, Dentistry Today 29 (2010) 128-129.
- [12] R. Sakaguchi, J. Powers (eds), Craig’s Restorative Dental Materials, 13 th Edition, Elsevier Mosby, Philadelphia, PA, USA, 2012.
- [13] M.M. Masadeh, S.F. Gharaibeh, K.H. Alzoubi, S.I. Al-Azzam, W.M. Obeidat, Antimicrobial Activity of Common Mouthwash Solutions on Multidrug-Resistance Bacterial Biofilms, Journal of Clinical Medicine Research 5/5 (2013) 389-394. DOI: https://doi.org/10.4021/jocmr1535w
- [14] D.B. de Araujo, E. de J. Campos, I.H. de A. Bastos, D.M. de Paula, E.R. Tenório Junior, R.P.C. de Araujo, Mouthrinses: active ingredients, pharmacological properties and indications, RGO.Revista Gaúcha de Odontologia (Online) 60/3 (2012) 349-357.
- [15] D.T. Zero, Dentifrices, mouthwashes, and remineralization/caries arrestment strategies, BMC Oral Health 6 (2006) S9. DOI: https://doi.org/10.1186/1472-6831-6-S1-S9
- [16] R.M. Duckworth, A. Maguire, N. Omid, I.N. Steen, G.I. McCracken, F.V. Zohoori, Effect of Rinsing with Mouthwashes after Brushing with a Fluoridated Toothpaste on Salivary Fluoride Concentration, Caries Research 43/5 (2009) 391-396. DOI: https://doi.org/10.1159/000239753
- [17] V.Yu. Reshetnyak, O.V. Nesterova, O.I. Admakin, D.A. Dobrokhotov, I.N. Avertseva, S.A. Dostdar, D.F. Khakimova, Evaluation of free and total fluoride concentration in mouthwashes via measurement with ion-selective electrode, BMC Oral Health 19 (2019) 251. DOI: https://doi.org/10.1186/s12903-019-0908-0
- [18] C.W. de A. Werner, R.A. Seymour, Are alcohol containing mouthwashes safe?, British Dental Journal 207 (2009) E19. DOI: https://doi.org/10.1038/sj.bdj.2009.1014
- [19] E. Vranic, A. Lacevic, A. Mehmedagic, A. Uzunovic, Formulation ingredients for toothpastes and mouthwashes, Bosnian Journal of Basic Medical Sciences 4/4 (2004) 51-58. DOI: https://doi.org/10.17305/bjbms.2004.3362
- [20] A. Joiner, C.4 - The Cleaning of Teeth, in: I. Johansson, P. Somasundaran (eds), Handbook for Cleaning/Decontamination of Surfaces, vol. 1, Elsevier Science B.V., Amsterdam, 2007, 371-405. DOI: https://doi.org/10.1016/B978-044451664-0/50010-3
- [21] O. Yazicioglu, M.K. Ucuncu, K. Guven, Ingredients in Commercially Available Mouthwashes, International Dental Journal (2023) (in press). DOI: https://doi.org/10.1016/j.identj.2023.08.004
- [22] N.A. Alessa, Effect of mouthwashes on the microhardness of aesthetic composite restorative materials, Anales del Sistema Sanitario de Navarra 46/2 (2023) e1049. DOI: https://doi.org/10.23938/ASSN.1049
- [23] K.H. Al-Samadani, Surface Hardness of Dental Composite Resin Restorations in Response to Preventive Agents, The Journal of Contemporary Dental Practice 17/12 (2016) 978-984.
- [24] D. de A. Miranda, C.E.D.S. Bertoldo, F.H.B. Aguiar, D.A.N.L. Lima, J.R. Lovadino, Effects of mouthwashes on Knoop hardness and surface roughness of dental composites after different immersion times, Brazilian Oral Research 25/2 (2011) 168-173. DOI: https://doi.org/10.1590/S1806-83242011000200012
- [25] M.S.C.C. Festuccia, L. da F.R. Garcia, D.R. Cruvinel, F. de C.P. Pires-De-Souza, Color stability, surface roughness and microhardness of composites submitted to mouthrinsing action, Journal of Applied Oral Science 20/2 (2012) 200-205. DOI: https://doi.org/10.1590/S1678-77572012000200013
- [26] G.A. de Morais Sampaio, L. Rangel Peixoto, G. de Vasconcelos Neves, D. do Nascimento Barbosa, Effect of mouthwashes on color stability of composite resins: A systematic review, Journal of Prosthetic Dentistry 126/3 (2020) 386-392. DOI: https://doi.org/10.1016/j.prosdent.2020.08.001
- [27] R. Stencel, J. Kasperski, W. Pakieła, A. Mertas, E. Bobela, I. Barszczewska-Rybarek, G. Chladek, Properties of Experimental Dental Composites Containing Antibacterial Silver-Releasing Filler, Materials 11/6 (2018) 1031. DOI: https://doi.org/10.3390/ma11061031
- [28] G. Chladek, I. Barszczewska-Rybarek, M. Chrószcz-Porębska, A. Mertas, The effect of quaternary ammonium polyethylenimine nanoparticles on bacterial adherence, cytotoxicity, and physical and mechanical properties of experimental dental composites, Scientific Reports 13 (2023) 17497. DOI: https://doi.org/10.1038/s41598-023-43851-y
- [29] W.S. Mokrzycki, M. Tatol, Color difference ΔE: a survey, Machine Graphics and Vision 20/4 (2011) 383-411.
- [30] R.D. Paravina, M.M. Pérez, R. Ghinea, Acceptability and perceptibility thresholds in dentistry: A comprehensive review of clinical and research applications, Journal of Esthetic and Restorative Dentistry 31/2 (2019) 103-112. DOI: https://doi.org/10.1111/jerd.12465
- [31] R.D. Paravina, R. Ghinea, L.J. Herrera, A.D. Bona, C. Igiel, M. Linninger, M. Sakai, H. Takahashi, E. Tashkandi, M. del M. Perez, Color difference thresholds in dentistry, Journal of Esthetic and Restorative Dentistry 27/S1 (2015) S1-S9. DOI: https://doi.org/10.1111/jerd.12149
- [32] D.T. Lindsey, A.G. Wee, Perceptibility and acceptability of CIELAB color differences in computer-simulated teeth, Journal of Dentistry 35/7 (2007) 593-599. DOI: https://doi.org/10.1016/j.jdent.2007.03.006
- [33] D. Oliveira, Esthetics of Dental Composites, in: V. Miletic (ed), Dental Composite Materials for Direct Restorations, Springer, Cham, 2018, 155-176. DOI: https://doi.org/10.1007/978-3-319-60961-4_11
- [34] M. Khosravi, B. Esmaeili, F. Nikzad, S. Khafri, Color Stability of Nanofilled and Microhybrid Resin-Based Composites Following Exposure to Chlorhexidine Mouthrinses: An In Vitro Study, Journal of Dentistry of Tehran University of Medical Sciences 13/2 (2016) 116-125.
- [35] T. Toz-Akalin, G. Genc, Y. Korkmaz-Ceyhan, F. Ozturk-Bozkurt, The effect of mouth rinses on the color stability of sonicfill and a nanohybrid composite, The Journal of Istanbul University Faculty of Dentistry 50/2 (2016) 17-23. DOI: https://doi.org/10.17096/jiufd.15743
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a36bf97f-a4e9-4e00-ae2d-a8c5bc1f54e3
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