Shear bond strength of a composite resin restoration in primary teeth following cavity preparation using laser- an in-vitro study.


Journal

Lasers in medical science
ISSN: 1435-604X
Titre abrégé: Lasers Med Sci
Pays: England
ID NLM: 8611515

Informations de publication

Date de publication:
27 Sep 2024
Historique:
received: 11 06 2024
accepted: 15 09 2024
medline: 27 9 2024
pubmed: 27 9 2024
entrez: 26 9 2024
Statut: epublish

Résumé

To evaluate and compare the shear bond strength of composite resin restorations in primary teeth, following cavity preparation with both traditional dental burs and laser irradiation. One hundred primary molars extracted from the children visiting our department were collected and randomly divided into five groups (A-E) with 20 teeth in each group. In groups A, B, C, D, and E the teeth samples were etched with phosphoric acid, Er; YAG laser followed by acid etching, Er, Cr: YSGG laser followed by acid etching, Er; YAG laser etching only and Er, Cr: YSGG laser etching only, respectively. Following, all the samples were restored with composite resin and subjected to 500 cycles of thermocycling. The shear bond strength of the resin composite was analyzed. The type of fractures was also noted. Data obtained were subjected to statistical analysis. The mean value of shear bond strength of Group A, B, C, D, and E was 17.562 ± 0.810, 15.928 ± 0.415, 14.964 ± 0.566, 11.833 ± 0.533 and 11.187 ± 0.517, respectively. Adhesive failure was most commonly seen in all the groups. The phosphoric acid etching remains a highly effective technique for pre-treating dentin in composite resin restorations. The shear strength of composite resin to the dentin of laser-prepared cavity in primary teeth can be improved by the addition of acid etching.

Identifiants

pubmed: 39327331
doi: 10.1007/s10103-024-04188-8
pii: 10.1007/s10103-024-04188-8
doi:

Substances chimiques

Composite Resins 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

244

Informations de copyright

© 2024. The Author(s), under exclusive licence to Springer-Verlag London Ltd., part of Springer Nature.

Références

Subramaniam P, Pandey A (2016) Assessment of Microleakage of a Composite Resin Restoration in primary Teeth following Class III Cavity Preparation using Er, Cr: YSGG laser: an in Vitro Study. J Lasers Med Sci 7(3):172–176
pubmed: 28144438 pmcid: 5262484 doi: 10.15171/jlms.2016.30
Olivi G, Genovese MD (2011) Laser restorative dentistry in children and adolescents. Eur Arch Paediatr Dent 12(2):68–78
pubmed: 21473836 doi: 10.1007/BF03262782
Davari A, Sadeghi M, Bakhshi H (2013) Shear Bond Strength of an etch-and-rinse Adhesive to Er:YAG Laser- and/or phosphoric acid-treated dentin. J Dent Res Dent Clin Dent Prospects 7(2):67–73
pubmed: 23875083 pmcid: 3713863
Tay FR, Pashley DH, Mak YF, Carvalho RM, Lai SC, Suh BI (2003) Integrating oxalate desensitizers with total-etch two-step adhesive. J Dent Res 82(9):703–707
pubmed: 12939354 doi: 10.1177/154405910308200909
Cheng JT, Itoh K, Kusunoki M, Hasegawa T, Wakumoto S, Hisamitsu H (2005) Effect of dentine conditioners on the bonding efficacy of one-bottle adhesives. J Oral Rehabil 32(1):28–33
pubmed: 15634298 doi: 10.1111/j.1365-2842.2004.01359.x
Diaci J, Gaspirc B (2012) Review comparison of Er:YAG and Er,Cr:YSGG lasers used in dentistry. J Laser Health Acad 1(1):1–13
Perhavec T, Gorkič A, Bračun D, Diaci J (2009) A method for rapid measure ment of laser ablation rate of hard dental tissue. Opt Laser Technol 41(4):397–402
doi: 10.1016/j.optlastec.2008.08.007
Diaci J (2008) Laser profilometry for the characterization of craters produced in hard dental tissues by Er:YAG and Er,Cr:YSGG lasers. J Laser Health Acad 2(1):1–10
Taşar S, Ulusoy MM, Merıç G (2014) Microshear bond strength according to dentin cleansing methods before recementation. J Adv Prosthodont 6:79–87
pubmed: 24843391 pmcid: 4024563 doi: 10.4047/jap.2014.6.2.79
Nahas P, Nammour S, Gerges E, Zeinoun T (2020) Comparison between Shear Bond Strength of Er:YAG and Er,Cr:YSGG lasers-assisted dentinal adhesion of self-adhering Resin Composite: an Ex vivo study. Dent J (Basel) 8(3):66
pubmed: 32630313 doi: 10.3390/dj8030066
Sung EC, Chenard T, Caputo AA, Amodeo M, Chung EM, Rizoiu IM (2005) Composite resin bond strength to primary dentin prepared with Er, Cr:YSSG laser. J Clin Pediatr Dent 30(1):45–49
pubmed: 16302599 doi: 10.17796/jcpd.30.1.el385u211tnu2574
Lee BS, Lin PY, Chen MH, Hsieh TT, Lin CP, Lai JY, Lan WH (2007) Tensile bond strength of Er,Cr:YSGG laser-irradiated human dentin and analysis of dentin-resin interface. Dent Mater 23(5):570–578
pubmed: 16820200 doi: 10.1016/j.dental.2006.03.016
Obeidi A, McCracken MS, Liu PR, Litaker MS, Beck P, Rahemtulla F (2009) Enhancement of bonding to enamel and dentin prepared by Er,Cr:YSGG laser. Lasers Surg Med 41(6):454–462
pubmed: 19588530 doi: 10.1002/lsm.20790
Türkmen C, Sazak-Oveçoğlu H, Günday M, Güngör G, Durkan M, Oksüz M (2010) Shear bond strength of composite bonded with three adhesives to Er,Cr:YSGG laser-prepared enamel. Quintessence Int 41(6):e119–e124
pubmed: 20490385
Takada M, Shinkai K, Kato C, Suzuki M (2015) Bond strength of composite resin to enamel and dentin prepared with Er,Cr:YSGG laser. Dent Mater J 34(6):863–871
pubmed: 26632236 doi: 10.4012/dmj.2015-053
Paryab M, Sharifi S, Kharazifard MJ, Kumarci N (2019) Cavity Preparation by laser in primary teeth: Effect of 2 levels of Energy output on the Shear Bond Strength of Composite Restoration to Dentin. J Lasers Med Sci 10(3):235–240
pubmed: 31749952 doi: 10.15171/jlms.2019.38
Faggion CM Jr (2012) Guidelines for reporting pre-clinical in vitro studies on dental materials. J Evid Based Dent Pract 12(4):182–189
pubmed: 23177493 doi: 10.1016/j.jebdp.2012.10.001
Bahrololoomi Z, Kabudan M, Gholami L (2015) Effect of Er:YAG Laser on Shear Bond Strength of Composite to Enamel and dentin of primary teeth. J Dent (Tehran) 12(3):163–170
pubmed: 26622267
Bahrololoomi Z, Ghafourifard R (2016) Shear Bond Strength of Primary Teeth Dentin irradiated with different erbium-doped Yttrium Aluminium Garnet laser energies and scanning Electron microscope study of dentin morphology. J Inter Ora Heal 8(10):943–947
doi: 10.4103/0976-7428.195198
International Organization for Standardization ISO/TS 11405 (2003) Technical Specifications Dental materials-testing of adhesion to tooth structure, 2nd edition. Switzerland
Torabinejad M, Bahjri K (2005) Essential elements of evidenced-based endodontics: steps involved in conducting clinical research. J Endod 31(8):563–569
pubmed: 16044037 doi: 10.1097/01.don.0000164137.28104.2f
Suwatviroj P, Messer LB, Palamara JE (2003) The effects of cavity preparation and lamination on bond strength and fracture of tooth-colored restorations in primary molars. Pediatr Dent 25(6):534–540
pubmed: 14733466
Carvalho RM, Yoshiyama M, Pashley EL, Pashley DH (1996) In vitro study on the dimensional changes of human dentine after demineralization. Arch Oral Biol 41(4):369–377
pubmed: 8771328 doi: 10.1016/0003-9969(95)00115-8
Al Habdan AH, Al Rabiah R, Al Busayes R (2021) Shear bond strength of acid and laser conditioned enamel and dentine to composite resin restorations: an in vitro study. Clin Exp Dent Res 7(3):331–337
pubmed: 33605075 pmcid: 8204037 doi: 10.1002/cre2.409
Wang JH, Yang K, Zhang BZ, Zhou ZF, Wang ZR, Ge X, Wang LL, Chen YJ, Wang XJ (2020) Effects of Er:YAG laser pre-treatment on dentin structure and bonding strength of primary teeth: an in vitro study. BMC Oral Health 20(1):316
pubmed: 33172456 pmcid: 7653740 doi: 10.1186/s12903-020-01315-z
Sumikawa DA, Marshall GW, Gee L, Marshall SJ (1999) Microstructure of primary tooth dentin. Pediatr Dent 21(7):439–444
pubmed: 10633518
Olmez A, Oztas N, Basak F, Erdal S (1998) Comparison of the resin-dentin interface in primary and permanent teeth. J Clin Pediatr Dent 22(4):293–298
pubmed: 9796498
Agostini FG, Kaaden C, Powers JM (2001) Bond strength of self-etching primers to enamel and dentin of primary teeth. Pediatr Dent 23(6):481–486
pubmed: 11800447
Selvig KA (1968) Ultrastructural changes in human dentine exposed to a weak acid. Arch Oral Biol 13(7):719–734
pubmed: 4876376 doi: 10.1016/0003-9969(68)90090-3
Delme KI, Deman PJ, De Moor RJ (2005) Microleakage of class V resin composite restorations after conventional and Er:YAG laser preparation. J Oral Rehabil 32(9):676–685
pubmed: 16102081 doi: 10.1111/j.1365-2842.2005.01550.x
Eguro T, Maeda T, Otsuki M, Nishimura Y, Katsuumi I, Tanaka H (2002) Adhesion of Er:YAG laser-irradiated dentin and composite resins: application of various treatments on irradiated surface. Lasers Surg Med 30(4):267–272
pubmed: 11948596 doi: 10.1002/lsm.10043
Dunn WJ, Davis JT, Bush AC (2005) Shear bond strength and SEM evaluation of composite bonded to Er:YAG laser-prepared dentin and enamel. Dent Mater 21(7):616–624
pubmed: 15978270 doi: 10.1016/j.dental.2004.11.003
Bertrand MF, Hessleyer D, Muller-Bolla M, Nammour S, Rocca JP (2004) Scanning electron microscopic evaluation of resin-dentin interface after Er:YAG laser preparation. Lasers Surg Med 35(1):51–57
pubmed: 15278928 doi: 10.1002/lsm.20063
Trajtenberg CP, Pereira PN, Powers JM (2004) Resin bond strength and micromorphology of human teeth prepared with an Erbium:YAG laser. Am J Dent 17(5):331–336
pubmed: 15575443
Kameyama A, Kawada E, Takizawa M, Oda Y, Hirai Y (2000) Influence of different acid conditioners on the tensile bond strength of 4-META/MMA-TBB resin to Er:YAG laser-irradiated bovine dentin. J Adhes Dent 2(4):297–304
pubmed: 11317376
Kiomarsi N, Arjmand Y, Kharrazi Fard MJ, Chiniforush N (2018) Effects of Erbium Family laser on Shear Bond Strength of Composite to dentin after Internal Bleaching. J Lasers Med Sci 9(1):58–62
pubmed: 29399313 doi: 10.15171/jlms.2018.12
Ceballo L, Toledano M, Osorio R, Tay FR, Marshall GW (2002) Bonding to Er-YAG-laser-treated dentin. J Dent Res 81(2):119–122
pubmed: 11827256 doi: 10.1177/0810119
Sakakibara Y (1998) A study on bond strength to dentin irradiated by erbium: YAG laser. Jpn J Conserv Dent 41:207–219
De Munck J, Van Meerbeek B, Yudhira R, Lambrechts P, Vanherle G (2002) Micro-tensile bond strength of two adhesives to Erbium:YAG-lased vs. bur-cut enamel and dentin. Eur J Oral Sci 110(4):322–329
pubmed: 12206595 doi: 10.1034/j.1600-0722.2002.21281.x
Brulat N, Rocca JP, Leforestier E, Fiorucci G, Nammour S, Bertrand MF (2009) Shear bond strength of self-etching adhesive systems to Er:YAG-laser-prepared dentin. Lasers Med Sci 24(1):53–57
pubmed: 18034284 doi: 10.1007/s10103-007-0519-x
Chimello-Sousa DT, de Souza AE, Chinelatti MA, Pécora JD, Palma-Dibb RG, Milori Corona SA (2005) Influence of Er:YAG laser irradiation distance on the bond strength of a restorative system to enamel. J Dent 34(3):245–251
pubmed: 16153764 doi: 10.1016/j.jdent.2005.06.009
Ramos RP, Chimello DT, Chinelatti MA, Nonaka T, Pécora JD, Palma Dibb RG (2002) Effect of Er:YAG laser on bond strength to dentin of a self-etching primer and two single-bottle adhesive systems. Lasers Surg Med 31(3):164–170
pubmed: 12224089 doi: 10.1002/lsm.10106
Kataumi M, Nakajima M, Yamada T, Tagami J (1998) Tensile bond strength and SEM evaluation of Er: YAG laser irradiated dentin using dentin adhesive. Dent Mater J 17(2):125–138
doi: 10.4012/dmj.17.125
Hibst R, Keller U (1989) Experimental studies of the application of the Er:YAG laser on dental hard substances: I. Measurement of the ablation rate. Lasers Surg Med 9(4):338–344
pubmed: 2761329 doi: 10.1002/lsm.1900090405
Aoki A, Ishikawa I, Yamada T, Otsuki M, Watanabe H, Tagami J, Ando Y, Yamamoto H (1998) Comparison between Er:YAG laser and conventional technique for root caries treatment in vitro. J Dent Res 77(6):1404–1414
pubmed: 9649169 doi: 10.1177/00220345980770060501
Ferreira LS, Apel C, Francci C, Simoes A, Eduardo CP, Gutknecht N (2010) Influence of etching time on bond strength in dentin irradiated with erbium lasers. Lasers Med Sci 25(6):849–854
pubmed: 19655225 doi: 10.1007/s10103-009-0715-y
Shahabi S, Chiniforush N, Bahramian H, Monzavi A, Baghalian A, Kharazifard MJ (2013) The effect of erbium family laser on tensile bond strength of composite to dentin in comparison with conventional method. Lasers Med Sci 28(1):139–142
pubmed: 22491942 doi: 10.1007/s10103-012-1086-3
Phrukkanon S, Burrow MF, Tyas MJ (1998) The influence of cross-sectional shape and surface area on the microtensile bond test. Dent Mater 14(3):212–221
pubmed: 10196798 doi: 10.1016/S0109-5641(98)00034-7
Shirani F, Birang R, Malekipour MR, Hourmehr Z, Kazemi S (2014) Shear bond strength of resin composite bonded with two adhesives: Influence of Er: YAG laser irradiation distance. Dent Res, Isfahan J 11(6):689–94

Auteurs

K L Girish Babu (KLG)

Department of Dentistry, Hassan Institute of Medical Sciences, Hassan, 573201, India. docgirish77@gmail.com.

Kavyashree Gururaj Hebbar (KG)

Department of Dentistry, Hassan Institute of Medical Sciences, Hassan, 573201, India.

Geeta Maruti Doddamani (GM)

Department of Orthodontics, Dr. Syamala Reddy Dental College Hospital and Research Centre, Bengaluru, Karnataka, India.

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