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Evaluating the clinical significance of color stability in nanohybrid composite resins: a comparative study of local and international brands

Year 2024, Volume: 7 Issue: 5, 571 - 580, 27.09.2024
https://doi.org/10.32322/jhsm.1532620

Abstract

Aims: The objective of this study was to evaluate the color stability of five nanohybrid composite resins, including locally produced Turkish brands and an international brand, after exposure to staining and brushing simulations over time.
Methods: Five nanohybrid composite resins; Filtek Z550 (FLT), Dolgunn (DLG), RubyComp Nano (CMP), Nova Compo C (NVC), and Parion (PRN) were tested. Specimens underwent staining and brushing simulations designed to replicate clinical oral conditions. The staining process involved immersing the specimens in a coffee solution for 8 hours per day over a 10-day period to simulate short-term staining (t1), and for 12 days to simulate long-term staining equivalent to 1 year (t2). Brushing cycles were used to replicate the mechanical wear caused by daily oral hygiene practices. Color measurements were recorded at baseline (t0), after 10 days of staining (t1), and after 1 year of simulated staining and brushing (t2). Additional analyses were conducted using Energy-dispersive X-ray spectroscopy (EDX) and Scanning Electron Microscopy (SEM) to investigate structural and surface characteristics. Statistical analysis was performed using generalized linear models and two-way robust ANOVA to assess the significance of differences in color stability, with a significance level set at p<0.05.
Results: The main effect of the composite was not found to be statistically significant on the median ΔE values (p=0.078). The main effect of time was found to be statistically significant on the median ΔE values (p<0.001). Additionally, the interaction between composite and time was statistically significant on the median ΔE values (p=0.001). The highest median value of 3.12 was observed in the NVC composite from ΔE2, while the lowest median value of 1.285 was observed in the PRN composite from ΔE1. EDX and SEM analyses provided insights into the material compositions and their influence on color stability.
Conclusion: The findings suggest that locally produced Turkish nanohybrid composites offer competitive color stability, making them viable alternatives to international brands for aesthetic dental restorations. This study highlights the need to consider both local and international materials for their clinical performance and cost-effectiveness in restorative dentistry. Future research should explore the long-term performance and clinical implications of these materials further.

References

  • Alzraikat H, Burrow MF, Maghaireh GA, Taha NA. Nanofilled resin composite properties and clinical performance: a review. Oper Dent. 2018;43(4):E173-E190.
  • Paolone G, Formiga S, De Palma F, et al. Color stability of resin‐based composites: Staining procedures with liquids-a narrative review. J Esthet Restor Dent. 2022;34(6):865-887.
  • Ipek İ, Bilge K. The effect of different liquids on the surface roughness and color stability of single shade and nanohybrid resin composites: an AFM and SEM analysis. Microsc Res Tech. 2024;87(9):2063-2071.
  • Ertaş E, Güler AU, Yücel AC, Köprülü H, Güler E. Color stability of resin composites after immersion in different drinks. Dent Mater J. 2006;25(2):371-376.
  • Figuero E, Nóbrega DF, García-Gargallo M, Tenuta LM, Herrera D, Carvalho JC. Mechanical and chemical plaque control in the simultaneous management of gingivitis and caries: a systematic review. J Clin Periodontol. 2017;44 Suppl 18:S116-S134.
  • Wiegand A, Burkhard JP, Eggmann F, Attin T. Brushing force of manual and sonic toothbrushes affects dental hard tissue abrasion. Clin Oral Investig. 2013;17(3):815-822.
  • Kumar S, Kumar Singh S, Gupta A, Roy S, Sareen M, Khajuria S. A profilometric study to assess the role of toothbrush and toothpaste in abrasion process. J Dent (Shiraz). 2015;16(3 Suppl): 267-273.
  • Garg SA, Chavda SM. Color masking white fluorotic spots by resin infiltration and its quantitation by computerized photographic analysis: a 12-month follow-up study. Oper Dent. 2020;45(1):1-9.
  • Abd Mutalib M, Rahman M, Othman M, et al. Scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) spectroscopy. Membrane characterization. Elsevier, 2017,pp.161-179.
  • Ucuncu MK, Celiksoz O, Sen E, et al. Investigation of the degree of monomer conversion in dental composites through various methods: an in vitro study. Appl Sci. 2024;14(11): 4406.
  • Tepe H, Can Yaman B, Akyüz İ, Ozer F. Effect of rotation frequency of polishing discs on the surface roughness of resin composite material. Proc Inst Mech Eng H. 2024;238(7):803-813.
  • Heintze SD, Forjanic M, Ohmiti K, Rousson V. Surface deterioration of dental materials after simulated toothbrushing in relation to brushing time and load. Dent Mater. 2010;26(4):306-319.
  • Hazar A, Akgül S, Koçak S, et al. Effect of brushing time with a whitening dentifrice on surface roughness of anterior composite resins. J Dent Indones. 2022;29:1.
  • Monteiro B, Spohr AM. Surface roughness of composite resins after simulated toothbrushing with different dentifrices. J Int Oral Health. 2015;7(7):1-5.
  • Lee YK. Comparison of CIELAB DeltaE(*) and CIEDE2000 color-differences after polymerization and thermocycling of resin composites. Dent Mater. 2005;21(7):678-682.
  • Poggio C, Vialba L, Berardengo A, et al. Color stability of new esthetic restorative materials: a spectrophotometric analysis. J Funct Biomater. 2017;8(3):26.
  • Alkhadim YK, Hulbah MJ, Nassar HM. Color shift, color stability, and post-polishing surface roughness of esthetic resin composites. Materials (Basel). 2020;13(6):1376.
  • Leite MLAES, Silva FDSDCME, Meireles SS, Duarte RM, Andrade AKM. The effect of drinks on color stability and surface roughness of nanocomposites. Eur J Dent. 2014;8(3):330-336.
  • Dindar MB and Atay MT. The effect of brushing force on the surface properties and color stability of dental enamel. NEU Dent J. 2023;5(3):167-172.
  • Van der Weijden GA, Timmerman MF, Danser MM, Van der Velden U. Relationship between the plaque removal efficacy of a manual toothbrush and brushing force. J Clin Periodontol. 1998; 25(5):413-416.
  • Tanoue N, Matsumura H, Atsuta M. Wear and surface roughness of current prosthetic composites after toothbrush/dentifrice abrasion. J Prosthet Dent. 2000;84(1):93-97.
  • ISO TR. Dental materials guidance on testing of wear: Part 1: wear by tooth brushing. Technical Report. doi:ISOTR.2007;14569:1
  • Teixeira EC, Thompson JL, Piascik JR, Thompson JY. In vitro toothbrush-dentifrice abrasion of two restorative composites. J Esthet Restor Dent. 2005;17(3):172-182.
  • Cho LR, Yi YJ, Heo SJ. Effect of tooth brushing and thermal cycling on a surface change of ceromers finished with different methods. J Oral Rehabil. 2002;29(9):816-822.
  • Nasim I, Neelakantan P, Sujeer R, Subbarao CV. Color stability of microfilled, microhybrid and nanocomposite resins-an in vitro study. J Dent. 2010;38 Suppl 2:e137-e142.
  • Wang Y, Hua H, Liu H, Zhu M, Zhu XX. Surface modification of ZrO2 nanoparticles and its effects on the properties of dental resin composites. ACS Appl Bio Mater. 2020;3(8):5300-5309.
  • Üçüncü MY and Üçüncü MK. Comparison of the mechanical properties of various microhybrid dental composites. EDR. 2023;22(2):58-64.
Year 2024, Volume: 7 Issue: 5, 571 - 580, 27.09.2024
https://doi.org/10.32322/jhsm.1532620

Abstract

References

  • Alzraikat H, Burrow MF, Maghaireh GA, Taha NA. Nanofilled resin composite properties and clinical performance: a review. Oper Dent. 2018;43(4):E173-E190.
  • Paolone G, Formiga S, De Palma F, et al. Color stability of resin‐based composites: Staining procedures with liquids-a narrative review. J Esthet Restor Dent. 2022;34(6):865-887.
  • Ipek İ, Bilge K. The effect of different liquids on the surface roughness and color stability of single shade and nanohybrid resin composites: an AFM and SEM analysis. Microsc Res Tech. 2024;87(9):2063-2071.
  • Ertaş E, Güler AU, Yücel AC, Köprülü H, Güler E. Color stability of resin composites after immersion in different drinks. Dent Mater J. 2006;25(2):371-376.
  • Figuero E, Nóbrega DF, García-Gargallo M, Tenuta LM, Herrera D, Carvalho JC. Mechanical and chemical plaque control in the simultaneous management of gingivitis and caries: a systematic review. J Clin Periodontol. 2017;44 Suppl 18:S116-S134.
  • Wiegand A, Burkhard JP, Eggmann F, Attin T. Brushing force of manual and sonic toothbrushes affects dental hard tissue abrasion. Clin Oral Investig. 2013;17(3):815-822.
  • Kumar S, Kumar Singh S, Gupta A, Roy S, Sareen M, Khajuria S. A profilometric study to assess the role of toothbrush and toothpaste in abrasion process. J Dent (Shiraz). 2015;16(3 Suppl): 267-273.
  • Garg SA, Chavda SM. Color masking white fluorotic spots by resin infiltration and its quantitation by computerized photographic analysis: a 12-month follow-up study. Oper Dent. 2020;45(1):1-9.
  • Abd Mutalib M, Rahman M, Othman M, et al. Scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) spectroscopy. Membrane characterization. Elsevier, 2017,pp.161-179.
  • Ucuncu MK, Celiksoz O, Sen E, et al. Investigation of the degree of monomer conversion in dental composites through various methods: an in vitro study. Appl Sci. 2024;14(11): 4406.
  • Tepe H, Can Yaman B, Akyüz İ, Ozer F. Effect of rotation frequency of polishing discs on the surface roughness of resin composite material. Proc Inst Mech Eng H. 2024;238(7):803-813.
  • Heintze SD, Forjanic M, Ohmiti K, Rousson V. Surface deterioration of dental materials after simulated toothbrushing in relation to brushing time and load. Dent Mater. 2010;26(4):306-319.
  • Hazar A, Akgül S, Koçak S, et al. Effect of brushing time with a whitening dentifrice on surface roughness of anterior composite resins. J Dent Indones. 2022;29:1.
  • Monteiro B, Spohr AM. Surface roughness of composite resins after simulated toothbrushing with different dentifrices. J Int Oral Health. 2015;7(7):1-5.
  • Lee YK. Comparison of CIELAB DeltaE(*) and CIEDE2000 color-differences after polymerization and thermocycling of resin composites. Dent Mater. 2005;21(7):678-682.
  • Poggio C, Vialba L, Berardengo A, et al. Color stability of new esthetic restorative materials: a spectrophotometric analysis. J Funct Biomater. 2017;8(3):26.
  • Alkhadim YK, Hulbah MJ, Nassar HM. Color shift, color stability, and post-polishing surface roughness of esthetic resin composites. Materials (Basel). 2020;13(6):1376.
  • Leite MLAES, Silva FDSDCME, Meireles SS, Duarte RM, Andrade AKM. The effect of drinks on color stability and surface roughness of nanocomposites. Eur J Dent. 2014;8(3):330-336.
  • Dindar MB and Atay MT. The effect of brushing force on the surface properties and color stability of dental enamel. NEU Dent J. 2023;5(3):167-172.
  • Van der Weijden GA, Timmerman MF, Danser MM, Van der Velden U. Relationship between the plaque removal efficacy of a manual toothbrush and brushing force. J Clin Periodontol. 1998; 25(5):413-416.
  • Tanoue N, Matsumura H, Atsuta M. Wear and surface roughness of current prosthetic composites after toothbrush/dentifrice abrasion. J Prosthet Dent. 2000;84(1):93-97.
  • ISO TR. Dental materials guidance on testing of wear: Part 1: wear by tooth brushing. Technical Report. doi:ISOTR.2007;14569:1
  • Teixeira EC, Thompson JL, Piascik JR, Thompson JY. In vitro toothbrush-dentifrice abrasion of two restorative composites. J Esthet Restor Dent. 2005;17(3):172-182.
  • Cho LR, Yi YJ, Heo SJ. Effect of tooth brushing and thermal cycling on a surface change of ceromers finished with different methods. J Oral Rehabil. 2002;29(9):816-822.
  • Nasim I, Neelakantan P, Sujeer R, Subbarao CV. Color stability of microfilled, microhybrid and nanocomposite resins-an in vitro study. J Dent. 2010;38 Suppl 2:e137-e142.
  • Wang Y, Hua H, Liu H, Zhu M, Zhu XX. Surface modification of ZrO2 nanoparticles and its effects on the properties of dental resin composites. ACS Appl Bio Mater. 2020;3(8):5300-5309.
  • Üçüncü MY and Üçüncü MK. Comparison of the mechanical properties of various microhybrid dental composites. EDR. 2023;22(2):58-64.
There are 27 citations in total.

Details

Primary Language English
Subjects Restorative Dentistry
Journal Section Original Article
Authors

Hatice Tepe 0000-0003-4744-5691

Özge Çeliksöz 0000-0002-4879-3631

Batucan Yaman 0000-0003-4295-0760

Publication Date September 27, 2024
Submission Date August 13, 2024
Acceptance Date September 18, 2024
Published in Issue Year 2024 Volume: 7 Issue: 5

Cite

AMA Tepe H, Çeliksöz Ö, Yaman B. Evaluating the clinical significance of color stability in nanohybrid composite resins: a comparative study of local and international brands. J Health Sci Med / JHSM. September 2024;7(5):571-580. doi:10.32322/jhsm.1532620

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