Marginal Microleakege in CL II Occlusal-Proximal Cavities Sealed with Different Temporary Filling Materials: An in vitro Study
Published: 2023-08-11
Page: 252-273
Issue: 2023 - Volume 6 [Issue 1]
Ismael D. Lama Taveras *
Dental Materials and Operative Dentistry Department, UNPHU University, National District, Dominican Republic.
*Author to whom correspondence should be addressed.
Abstract
Marginal microleakage is the process of mechanical micro-separation where the separation between the restorative material and the cavity walls is observed, causing the infiltration of salivary fluids. Therefore, the purpose of this study is to determine the marginal microleakage in Class II Occlusal-Proximal cavities sealed with different temporary filling materials. Sixty upper and lower premolars were divided into three groups: N=20 teeth for each group of temporary filling materials (C.I.V, IRM R, COLTOSOL). Prophylaxis was performed on each tooth using pumice stone and 0.12% chlorhexidine, followed by the preparation of Class II Occlusal-Proximal cavities. The cavities were disinfected with 0.2% chlorhexidine for one minute, air-dried, and sealed with Rapi Dry as a liner for 15 seconds, then immersed in 0.9% saline solution for 24 hours. The samples were dried on an absorbent surface, stained with 0.1% methylene blue for 48 hours at room temperature, washed, and dried on an absorbent surface for one hour. Sagittal cuts were made with abundant irrigation and constant air, and measurements were taken using a Wireless Digital Microscope with a zoom capacity of 50x-1000x and a resolution of 1920*1080. The images were adjusted to actual scale using Adobe Photoshop and Illustrator CS6. The results showed that C.I.V had lower marginal microleakage (G3 G0) and higher E.S.M.O.P. (12/20) than IRM R (G4, 9/20) and COLTOSOL (G4 G0, 8/20) in the teeth. Therefore, the temporary filling materials C.I.V and COLTOSOL exhibited less marginal microleakage in Class II Occlusal-Proximal cavities compared to IRM R.
Keywords: Microleakage, materials, temporary dental filling, class II cavity preparation
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Iliana G. Dental caries. Some factors related to their appearance in children. Scielo [Internet Magazine] 2008. [cited September 12, 2019]; 45(1): 545. Available at: http:/scielo.sld.cu/scielo.php?script=sci_arttext&pid=S0034-75072008000100004.
Duran G. Cavities of Black. Operative. Cuban Journal of Stomatology [Internet Magazine] 2017. [cited September 12, 2019]: 1-4. Available at: https://es.scribd.com/doc/38199901/cavidades-deblack-operatoria.
Nocchi E. Restorative Dentistry [Internet] 2008. [cited September 12, 2019]: 473. Available at: https://books.google.com.do/books?id=iwceudulmlqc&pg=pa134&lpg=pa134&dq=los+principales+ thinners+are:+tegdma+and+edma,+the+problem+presented+with+thinners+is+that+they+increase+polymerization+contraction+of+composite+resins. +ade#v=onep.
Gil Lc, Acosta S, Jiménez L, Brache Aa, Grau P. Evaluation of marginal microleakage in class II restoration techniques with composite resin. National Journal of Dentistry [Internet Magazine] 2016. [cited September 12, 2019]: 13. Available at: https://revistas.ucc.edu.co/index.php/od/article/view/578.
Insignares S. Operative and dental materials. Human teeth, dental anatomy [Internet] 2016. [cited September 12, 2019]: 113. Available at: https://es.scribd.com/document/327476273/operatoria-dental-unidad-5.
Armijos X. Evaluation of the degree of coronal microleakage of three temporary filling materials (cavit, coltosol and glass ionomer cement) [Internet] 2011. [cited April 3, 2019]; 3: 9. Available at: http://repositorio.ucsg.edu.ec/bitstream/3317/837/1/t-ucsg-pre-med-odon-4.pdf.
Espinosa P, Cruz A, Armas A, Carrera A, López E. In vitro evaluation of the degree of microleakage of three provisional cements. Sanmarquina Dentistry [Internet Magazine] 2018. [cited March 15, 2019]; 21(2):87. Available at: http://revistasinvestigacion.unmsm.edu.pe/index.php/odont/article/view/14768.
Gélvez M, Velosa J. Durability of diamond burs after wear on natural teeth, comparing 4 commercial brands, analyzed in electron microscopy [Internet] 2017. [cited June 31, 2019]; 36(77). Available at: https://www.researchgate.net/publication/327429978_durabilidad_de_las_fresas_de_diamante_tras_realizar_desgastes_en_dientes_naturales_comparando_4_marcas_comerciales_analizado_en_microscopia_electronica_durability_of_four_diamond_bur_brands_after_toot.
Sanabria J, Schneegans T. In vitro study of the marginal sealing of proximal drawers in class II fillings made with the incremental technique compared with the modified incremental technique [Thesis degree]. Nicaragua. National Autonomous University of Nicaragua; 2016. [cited May 21, 2019]: 36-42. Available at: http://repositorio.unan.edu.ni/7388.
Chaple A. Modification of class II technique of cavities restoration using composites. Scielo [Internet Magazine] 2015. Higher Institute of Medical Sciences of Havana [cited June 3, 2019]: 2-4. Available at: http://scielo.sld.cuscielo.php?script=sci_arttext&pid=s1729519x201500030002
Mastach Lf, Roca Pc, Sierra Pr. In vitro study of microleakage in class II fillings made of condensable composite resin. Scielo [Internet Magazine] 2015. [cited June 31, 2019]: 3-5. Available at: http://scielo.isciii.es/pdf/odonto/v20n2/original3.pdf.
Caballero Cs, García Cr, Untiveros G, Peruana U, Heredia Cs. In vitro coronal microleakage with three temporary filling materials used in endodontics. Herediana Stomatological Magazine [Internet Magazine] 2010. [cited August 13, 2019]; 2:3-7. Available at: http://repositorio.ucsg.edu.ec/bitstream/3317/837/1/T-UCSG-PRE-MED-ODON-4.pdf.
Ramirez R. Microleakage in class II cavities restored with low shrinkage composite resins [Internet] 2009. [cited August 13, 2019]: 1-6. Available at: https://www.actaodontologica.com/ediciones/2009/1/art-14/.
Camejo A. Coronary microleakage in endodontically treated teeth. Review of the Venezuelan literature. Acta Odontología Venezuela [Internet Magazine] 2008. [cited August 15, 2019]. Available at: https://www.actaodontologica.com/ediciones/2008/4/art-27/.
Gil Lc, Acosta S, Jiménez L, Brache Aa, Grau P. Evaluation of marginal microleakage in class II restoration techniques with composite resin. National Odontological Magazine [Internet Magazine] 2013. [cited June 21, 2019]; 9:53–60. Availableat:https://revistas.ucc.edu.co/index.php/od/article/view/578.
Romero L, Ramirez O. Marginal microleakage in pit and fissure sealants using conventional and supplementary techniques: an in vitro study [Grade Thesis]. Santo Domingo: Pedro Henríquez Ureña National University; 2017.
Perez J. Dental caries [Internet] 2008. [cited September 12, 2019]. Available at: https://es.scribd.com/document/327476273/operatoria-dental-unidad-5
Núñez D. Biochemistry of dental caries. Scielo [Internet Magazine] 2010. [cited September 12, 2019]; 3: 9. Available at: http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S1729-519X2010000200004.
González A. Dental health: Relationship between dental caries and food consumption. Scielo [Internet Magazine] 2013. [cited August 12, 2019]: 28. Available at: http://scielo.isciii.es/scielo.php?script=sci_arttext&pid=s0212-16112013001000008.
Camilo J, Polanco O, David A, Chávez L, Peláez A. Provisional restorations and cad/cam system [Internet] 2015. [cited May 15, 2019]; 2:4-7. Available at: http://bdigital.ces.edu.co:8080/repositorio/bitstream/10946/4109/1/restauraciones_provisionales.pdf.
Cruz P, Armas V, Espinosa A, Carrera A, López E. In vitro evaluation of the degree of microleakage of three provisional cements. Sanmarquina Dentistry [Internet Magazine] 2018. [cited April 3, 2019]:12-17. Available at: http://revistasinvestigacion.unmsm.edu.pe/index.php/odont/article/view/14768.
Corvera V, Mia I. Stomatognathic System [Internet] 2011. [cited August 12, 2019]. Available at: http://wwwestomaupao-ivana.blogspot.com/2010/06/el-esmalte.html.
Esponda R. Dental Anatomy [Internet] 2017. [cited September 12, 2019]: 390. Available at: https://es.scribd.com/doc/30468426/anatomia-dental-esponda-vila.
Rosa C. Oral histology – enamel and lad [Internet] 2017. [cited September 12, 2019]: 2-3. Available at: https://es.scribd.com/doc/76014340/histologia-oral-esmalte-y-lad.
Campos G. Histology, embryology and oral tissue engineering [Internet] 2009. [cited September 13, 2019]. Available at: https://www.academia.edu/36462380/histologia_embriologia_e_ingenieria_tisular_bucodental_1
Argudo P. Anatomy of teeth: dental enamel, dentin, cement, pulp [Internet] 2017. [cited September 13, 2019]:2. Available at: https://www.onmeda.es/higiene_bucodental/anatomia_dientes.html.
Ecured C. Dental cement [Internet] 2017. [cited September 13, 2019]. Available at: Https://www.ecured.cu/cemento_dental.
Salvador J. Cavidades de Black: class II [Internet] 2018. [cited September 13, 2019]. Available at: http://cavidadesdeblack.blogspot.com/p/clase-ii.html.
Ayala E. Dental filling materials [Internet] 2018. [cited September 13, 2019]. Available at: https://dvd-dental.com/blogodontomecum/materiales-de-obturacion-dental/.
Pat V, Edwin C, Farfan J, Canul O, Pacheco V. Obturation materials [Internet] 2017. [cited September 13, 2019]. Available at: www.slideshare.net/victorpachecovazquez/materiales-de-obturacion.
Cov L. Dental biomaterials [Internet] 2010. [cited September 12, 2019]: 142-151-155-161. Available at: Https://Www.Libreriauniversalbooks.Com/Products/Biomateriales-Dentales-2e.
Type II glass ionomer cement restoration pack, Casa GC Gold Label LC Mini. [Internet] 2016. [cited October 13, 2019]. Available at: https://www.google.com/search?q=Cement+Glass+Ionomer+Type+II+Restoration,+Casa+GC+Gold+Label+LC+Mini+Pack.&sxsrf=ACYBGNSpt3EPoyT7hqddnfXKnztAVLxsQ: 1573662172960&tbm=isch&source=iu&ictx=1&fir=4yEgJpSKO4ptBM%253A%252C5QinTc2VrekjOM%252C_&vet=1&usg=A.
Phillips J. Ciencia de los materiales dentales [Internet] 2010. [citado 13 de septiembre de 2019]: 480–489. Disponible en: books.google.com.do/books/about/phillips_la_ciencia_de_los_materiales_de.html?id=4unifbmauqec&printsec=frontcover&source=kp_read_button&redir_esc=y#v=onepage&q&f=false
Pedro Enríquez Ureña National University (UNPHU). Dental Manual of dental surgery I. Preclinical. Dominican Republic; 2016: 44–46.
ZOER'S commercial house. Zinc oxide and eugenol cement reinforced with synthetic resin (IRM) [Internet] 2014. [cited October 13, 2019]. Available at:https://www.google.com/search?q=(IRM).+Commercial+house+ZOER&client=firefoxbd&source=lnms&tbm=isch&sa=X&ved=0ahUKEwjlseyX9uflAhWnTd8KHSqwCFkQ_AUIESgB&biw=1366&bih=654#imgrc=Sm1Ke i2kAziPiM.
3M ESPE commercial house, putty system. Eugenol-free zinc oxide cement (Coltosol) [Internet] 2015. [cited October 16, 2019]. Available at: https://www.google.com/search?client=firefoxd&biw=1366&bih=654&tbm=isch&sa=1&ei=QV7MXevXOGn5wKPzrLoBA&q=coltosol+3M+ESPE%2C+System+Putty&oq=coltosol+3M+ESPE%2C+System. +Putty&gs_l=img.3...4165.4165..43.0.0..0.130.130.0j1......0..1..gwswizimg.udU2VdK2nk&ved=0ahUKEwir_IuflAhXh01kKHQnDE0Q4dUDCAY&uact=5#imgrc=Snjnk79 Vz8PcfM.
Yepes J. Coltosol [Internet] 2012. [cited September 13, 2019]. Available at: https://es.scribd.com/doc/70160259/coltosol.
Arrobo P, Cruz A, Armas A, Carrera A, López E. In vitro evaluation of the degree of microleakage of three provisional cements. Sanmarquina Dentistry Magazine [Internet Magazine] 2011. [cited September 23, 2019]; 2:87. Available at: http://repositorio.ucsg.edu.ec/bitstream/3317/837/1/T-UCSG-PRE-MED-ODON-4.pdf.
Reidl L. Measurement instruments [Internet] 2017. [cited September 26, 2019]. Available at: http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S2007-50572013000200007.
Khan A. Introduction-to-cells, microscopy [Internet] 2016. [cited 2019 Sep 26]:3-7. Available at: https://es.khanacademy.org/science/biology/structure-of-a-cell/introduction-to-cells/a/microscopy.
41.kk Sanchez R, Oliva N. History of the microscope and its impact on Microbiology [Internet Magazine] 2015. [cited September 26, 2019]. Available at: http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S1727-81202015000200010.
Martin R. Health Encyclopedia [Internet Magazine] 2016. [cited October 15, 2019];1. Available at: http://scielo.isciii.es/scielo.php?script=sci_arttext&pid=S1139-76322013000200002.
Definition C. Methylene blue general concept [Internet] 2015. [cited October 15, 2019]: 1. Available at: Https://conceptodefinicion.de/azul-de-methylene/.
Oz M, Lorke D, Hasan M, Petroianu G. Cellular and molecular actions of methylene blue. Medicinal research reviews [Internet Magazine] 2011. [cited October 15, 2019] : 93–117. Available at: https://www.ncbi.nlm.nih.gov/pubmed/19760660.
Khan A. Polymerase chain reaction (PCR) [Internet] 2016. [cited 2019 Oct 18]. Available at: https://es.khanacademy.org/science/biology/biotech-dna-technology/dna-sequencing-pcr-electrophoresis/a/polymerase-chain-reaction-pcr.
Allscience. Thermocycler [Internet] 2013. [cited September 26, 2019]. Available at: https://www.e-allscience.com/blogs/news/8477021-que-es-y-comofunciona-un-termociclador#targettext=a thermocycler is a device, with the Sanger method.
Callister Wd. Introduction to materials science and engineering [Internet] 2014. [cited September 26, 2019]. Available at: https://jmcacer.webs.ull.es/ctmat/practicas laboratorio_archivos/traccion.pdf.
Concept D. Methylene blue definition [Internet] 2018. [cited September 26, jjjjjjjjk2019]. Available at: https://conceptodefinicion.de/azul-de-methylene.
Valdez E. Dental cement [Internet] 2014. [cited September 26, 2019]. Available at: https://es.slideshare.net/erickalexis184/cemento-dental-32906704.
Wordreference. Spectrum definition [Internet] 2005. [cited September 26, 2019]. Available at: https://www.wordreference.com/definicion/espectro.
Rejumed C. Hidroxiapatita, aesthetic clinic in Marbella rejumed [Internet] 2017. [cited September 26, 2019]. Available at: https://clinicarejumed.com.
Meanings. In vitro meaning [Internet] 2014. [cited September 26, 2019]. Available at: https://www.significados.com/in-vitro/