Effect of Antimicrobial Pre-Treatment on the Microleakage and Shear Bond Strength of a Self- Adhesive Composite Hybrid Restorative Material: An in vitro Study

Volume 11 , Issue 3 , December 2024 , Pages 1-9

Authors

Hazhan A. Othman 1 ; Arass J. Noori 1

1 Pedodontics and Community Oral Health Department, College of Dentistry, University of Sulaimani, Sulaimani, Iraq.

DOI logo 10.17656/sdj.10193

Keywords

Abstract


Objective: This study aimed to evaluate the effect of three types of cavity pretreatment disinfectants on the microleakage and shear bond strength (SBS) of the self-adhesive composite hybrid restorative material Surefil One.

Methods: Sixty-four sound premolar teeth were utilized for conducting microleakage and shear bond strength experiments, with 32 teeth allocated to each test. The microleakage test was conducted on class V restorations on the buccal surfaces using the dye penetration method after pretreating the cavities before restoration. The SBS test was performed by putting a cylinder of the restoration on the dentin surface, subjected to pretreatment and then subjected to force by a universal testing machine. Each test consisted of 4 groups (n=8): group 1 (control group restoration without pretreatment of the surfaces), group 2 (chlorhexidine “CHX” group) pretreated with 2% chlorhexidine, group 3 (SDF group) pretreated with silver diamine fluoride and group 4 (NaOCl group) pretreated with 1% sodium hypochlorite.

Results: No statistically significant differences (p>0.05) between the degree of microleakage and the type of disinfectant were detected in either enamel or cementum. In contrast, SBS showed significant differences between groups. The SDF group showed the highest SBS value, followed by the CHX group. However, for the NaOCl group, the SBS was negatively influenced, and the SBS was much lower than that of the control group.

Conclusions: Antimicrobial pretreatment of dental cavities may have different effects on the adhesive properties (microleakage and shear bond strength) of the restorative dental material (self-adhesive hybrid restorative material) ranging from harmful to beneficial effects. None of the applied antimicrobial agents showed a significant effect on the microleakage values, while they showed different significant effects on the SBS values. Although sodium hypochlorite is a potent antimicrobial agent, it is not recommended for disinfecting restoration cavities since it has a negative effect on the SBS values. In contrast, Chlorhexidine solutions and silver diamine fluoride can be safely applied, with the added advantage of increasing the adhesive property of the Surefil One restorative material.

References


  1. Sabharwal A, Stellrecht E, Scannapieco FA. Associations between dental caries and systemic diseases: a scoping review. *BMC Oral Health*. 2021;21:472.
  2. Guzmán-Armstrong S, Johnsen DC. Caries management decision-making. *Dent Clin North Am*. 2019;63(4):679-93.
  3. Hajishengallis E, Parsaei Y, Klein MI, Koo H. Advances in the microbial etiology and pathogenesis of early childhood caries. *Mol Oral Microbiol*. 2017;32(1):24-34.
  4. Dhar V, Pilcher L, Fontana M, González-Cabezas C, Keels MA, Mascarenhas AK, et al. Evidence-based clinical practice guideline on restorative treatments for caries lesions. *J Am Dent Assoc*. 2023;154(7):551-66.
  5. Salama F, Balto H, Al-Yahya F, Al-Mofareh S. The effect of cavity disinfectants on microleakage of composite restorations in primary teeth. *Eur J Paediatr Dent*. 2015;16(4):295-300.
  6. Kapdan A, Öztaş N. Effects of chlorhexidine and gaseous ozone on microleakage and on the bond strength of dentin bonding agents with compomer restoration on primary teeth. *J Dent Sci*. 2015;10(1):46-54.
  7. Algailani U, Alshaikhli LO, Al-Zahawi A, Alzbeede A, Salomy Monica Diyya A, Osman O. Comparing occlusal and cervical microleakage in class V restorations using two different nanohybrid resin composite with different insertion techniques. *Mater Today*. 2022;60(3):1736-40.
  8. Sadeghyar A, Lettner S, Watts DC, Schedle A. Alternatives to amalgam: Is pretreatment necessary for effective bonding to dentin? *Dent Mater*. 2022;38(11):1703-9.
  9. Dias AGA, Magno MB, Delbem ACB, Cunha RF, Maia LC, Pessan JP. Clinical performance of glass ionomer cement and composite resin in Class II restorations in primary teeth: A systematic review and meta-analysis. *J Dent*. 2018;73(1):1-13.
  10. François P, Remadi A, Le Goff S, Abdel-Gawad S, Attal JP, Dursun E. Flexural properties and dentin adhesion in recently developed self-adhesive bulk-fill materials. *J Oral Sci*. 2021;63(2):139-44.
  11. Kidd EAM. How 'clean' must a cavity be before restoration? *Caries Res*. 2004;38(3):305-13.
  12. Zheng P, Zaruba M, Attin T, Wiegand A. Effect of Different Matrix Metalloproteinase Inhibitors on Microtensile Bond strength of an etch-and-rinse and a self-etching adhesive to dentin. *Oper Dent*. 2015;40(1):80-6.
  13. Knight G, McIntyre J, Craig G, Zilm P, Gully N. Differences between normal and demineralized dentine pretreated with silver fluoride and potassium iodide after an in vitro challenge by *Streptococcus mutans*. *Aust Dental J*. 2007;52(1):16-21.
  14. Montes MAJR, de Goes MF, Sinhoreti MAC. The in vitro morphological effects of some current pre-treatments on dentin surface: a SEM evaluation. *Oper Dent*. 2005;30(2):201-12.
  15. Bin-Shuwaish MS, AlHussaini AA, AlHudaithy LH, AlDukhiel SA, Al-Jamhan AS. An in vitro evaluation of microleakage of resin-based composites bonded to chlorhexidine-pretreated dentin by different protocols of a universal adhesive system. *Saudi Dent J*. 2021;33(7):503-10.
  16. Zhao IS, Mei ML, Burrow MF, Lo ECM, Chu CH. Effect of silver diamine fluoride and potassium iodide treatment on secondary caries prevention and tooth discolouration in cervical glass ionomer cement restoration. *Int J Mol Sci*. 2017;18(2):340.
  17. Hussein A, Kareem F. The effect of silver diamine fluoride, CPP-ACP/NaF, and sodium fluoride varnish on deciduous enamel erosion by daily snack (drink) in children/ an in vitro study. *Sulaimani Dent J*. 2022;9(2):30-7.
  18. Hiraishi N, Sayed M, Takahashi M, Nikaido T, Tagami J. Clinical and primary evidence of silver diamine fluoride on root caries management. *Jpn Dent Sci Rev*. 2022;58:1-8.
  19. Uceda-Gómez N, Reis A, Carrilho MR de O, Loguercio AD, Rodriguez Filho LE. Effect of sodium hypochlorite on the bond strength of an adhesive system to superficial and deep dentin. *J Appl Oral Sci*. 2003;11(3):223-8.
  20. Weston CH, Ito S, Wadgaonkar B, Pashley DH. Effects of time and concentration of sodium ascorbate on reversal of NaOCl-induced reduction in bond strengths. *J Endod*. 2007;33(7):879-81.
  21. Fröhlich TT, Botton G, Rocha R de O. Bonding of glass-ionomer cement and adhesives to silver diamine fluoride-treated dentin: an updated systematic review and meta-analysis. *J Adhes Dent*. 2022;24(1):29-38.
  22. Greenwall-Cohen J, Francois P, Silikas N, Greenwall L, Le Goff S, Attal JP. The safety and efficacy of "over the counter" bleaching products in the UK. *Br Dent J*. 2019;226(4):271-6.
  23. Abuljadayel R, Aljadani N, Almutairi H, Turkistani A. Effect of antibacterial agents on dentin bond strength of bioactive restorative materials. *Polymers (Basel)*. 2023;15(12):2612.
  24. Panahpour Eslami N, Chan DCN, Sadr A. Effect of silver diammine fluoride and glass ionomer on remineralisation of natural dentine caries. *Journal of Dentistry*. 2021;106:103578.
  25. Caughman WF, Rueggeberg FA, Curtis JW. Clinical guidelines for photocuring restorative resins. *J Am Dent Assoc*. 1995;126(9):1280-2, 1284, 1286.
  26. Ozel E, Korkmaz Y, Attar N, Bicer CO, Firatli E. Leakage pathway of different nano-restorative materials in class v cavities prepared by Er:YAG laser and bur preparation. *Photomed Laser Surg*. 2009;27(5):783-9.
  27. Omrani LR, Sabouri P, Abbasi M, Ahmadi E, Ghavam M. Shear bond strength of two types of glass ionomer to bleached dentin: effect of delayed bonding and antioxidant agent. *Open Dent J*. 2016;10(1):720-7.
  28. Noori AJ, Kareem FA. Setting time, mechanical and adhesive properties of magnesium oxide nanoparticles modified glass-ionomer cement. *J Mater Res Technol*. 2020;9(2):1809-18.
  29. Mitra SB, Lee CY, Bui HT, Tantbirojn D, Rusin RP. Long-term adhesion and mechanism of bonding of a paste-liquid resin-modified glass-ionomer. *Dent Mater*. 2009;25(4):459-66.
  30. Mali P, Deshpande S, Singh A. Microleakage of restorative materials: an in vitro study. *J Indian Soc Pedod Prev Dent*. 2006;24(1):15-8.
  31. Al-Gailani U, Alqaysi S. Estimation of the gingival microleakage of two composite resins with three insertion techniques for class v restorations (in-vitro comparative study). *Sulaimani Dent J*. 2019;6(2):15-21.
  32. Hugo WB, Longworth AR. The effect of chlorhexidine on the electrophoretic mobility, cytoplasmic constituents, dehydrogenase activity and cell walls of *Escherichia coli* and *Staphylococcus aureus*. *J Pharm Pharmacol*. 2011;18(9):569-78.
  33. Frankenberger R, Krämer N, Oberschachtsiek H, Petschelt A. Dentin bond strength and marginal adaption after NaOCl pre-treatment. *Oper Dent*. 2000;25(1):40-5.
  34. Arias VG, Bedran-de-Castro AKB, Pimenta LA. Effects of sodium hypochlorite gel and sodium hypochlorite solution on dentin bond strength. *J Biomed Mater Res*. 2005;72B(2):339-44.
  35. Pilo R, Cardash HS, Oz-Ari B, Ben-Amar A. Effect of preliminary treatment of the dentin surface on the shear bond strength of resin composite to dentin. *Oper Dent*. 2001;26(6):569-75.
  36. Parsaie Z, Firouzmandi M, Mohammadi N. Evaluating the effect of pretreatment with matrix metalloproteinase inhibitors on the shear bond strength of composite resin to primary teeth dentin: a 6-month in vitro study. *Contemp Clin Dent*. 2021;12(4):408-13.
  37. Gunaydin Z, Yazici A, Cehreli Z. In vivo and in vitro effects of chlorhexidine pretreatment on immediate and aged dentin bond strengths. *Oper Dent*. 2016;41(3):258-67.
  38. Gupta J, Thomas MS, Radhakrishna M, Srikant N, Ginjupalli K. Effect of silver diamine fluoride-potassium iodide and 2% chlorhexidine gluconate cavity cleansers on the bond strength and microleakage of resin-modified glass ionomer cement. *J Conserv Dent*. 2019;22(2):201-6.
  39. Mei ML, Nudelman F, Marzec B, Walker JM, Lo ECM, Walls AW, et al. Formation of Fluorohydroxyapatite with Silver Diamine Fluoride. *J Dent Res*. 2017;96(10):1122-8.
  40. Türkün M, Türkün LS, Kalender A. Effect of cavity disinfectants on the sealing ability of nonrinsing dentin-bonding resins. *Quintessence Int*. 2004;35(6):469-76.
Statistics
  • Article view974
  • Downloads18
  • Published at1 December 2024

  • RIS
  • BibTeX
  • EndNote
  • Mendeley
  • APA (7th edition)
  • MLA (9th edition)
  • Chicago
  • Harvard
  • IEEE
  • Vancouver