Acceso abierto

Evaluation of the microbial, cytotoxic and physico-chemical properties of the stainless steel crowns used in pediatric dentistry

, , , , , , ,  y   
26 abr 2023

Cite
Descargar portada

Alkarimi H.A., Watt R.G., Pikhart H., Sheiham A., Tsakos G., Dental Caries and Growth in School-Age Children, Pediatrics 2014, 133, e616–e623. Search in Google Scholar

Amanna E.N., Bhat S.S., Hegde S.K., An in Vitro Evaluation of Nickel and Chromium Release from Different Commercially Available Stainless Steel Crowns, J. Indian Soc. Pedod. Prev. Dent. 2019, 37, 31–38. Search in Google Scholar

Anusha K., Sridevi E., Sai Sankar A., Sridhar M., Sankar Ks., Chowdary Kh., An In Vitro Evaluation of Biodegradability of Stainless Steel Crowns at Various Salivary PH, Indian J. Dent. Res., 2020, 31, 569. Search in Google Scholar

Arunima, Ahuja V., Crowns for paediatric teeth: Stainless steel crown, J. Dent. Panacea, 2021, 3 (1), 20–25. Search in Google Scholar

Basir L., Shamsaei M., Ziaei S.A., Evaluation of Nickel Releasing from Stainless Steel Crowns Regarding to “Trimming”: An in Vitro Study, J. Indian Soc. Pedod. Prev. Dent., 2018, 36, 58–64. Search in Google Scholar

Beltagy T.M., Effect of Multiple Stainless Steel Crowns on Salivary pH, Nickel, and Chromium Levels, Egypt Dent. J., 2020, 66 (1), 1–16. Search in Google Scholar

Bhaskar V., Subba Reddy V., Biodegradation of Nickel and Chromium from Space Maintainers: An in Vitro Study, J. Indian Soc. Pedod. Prev. Dent., 2010, 28, 6–12. Search in Google Scholar

Bishara S.E., Barrett R.D., Selim M.I., Biodegradation of Orthodontic Appliances. Part II. Changes in the Blood Level of Nickel, Am. J. Orthod. Dentofacial Orthop., 1993, 103, 115–119. Search in Google Scholar

Centers for Disease Control and Prevention, U.S.D. of H. and H.S. Centers for Disease Control and Prevention. Oral Health Surveillance Report: Trends in Dental Caries and Sealants, Tooth Retention, and Edentulism, United States, 1999–2004 to 2011–2016. Atlanta, GA. Search in Google Scholar

Chisini L.A., Collares K., Cademartori M.G., de Oliveira L.J.C., Conde M.C.M., Demarco F.F., Corrêa M.B., Restorations in Primary Teeth: A Systematic Review on Survival and Reasons for Failures, Int. J. Paediatr. Dent., 2018, 28, 123–139. Search in Google Scholar

Danaei S.M., Safavi A., Roeinpeikar S.M.M., Oshagh M., Iranpour S., Omidkhoda M., Ion Release from Orthodontic Brackets in 3 Mouthwashes: An in-Vitro Study, Am. J. Orthod. Dentofacial Orthop., 2011, 139, 730–734. Search in Google Scholar

de Almeida D.G., Soares Da Silva R. de C.F., Luna J.M., Rufino R.D., Santos V.A., Banat I.M., Sarubbo L.A., Biosurfactants: Promising Molecules for Petroleum Biotechnology Advances, Front Microbiol., 2016, 7, 1718. Search in Google Scholar

Degrazia F.W., Genari B., Ferrazzo V.A., dos Santos-Pinto A., Grehs R.A., Enamel Roughness Changes after Removal of Orthodontic Adhesive, Dent. J. (Basel), 2018, 6, 6 (3), 39. Search in Google Scholar

Garg V., Panda A., Shah J., Panchal P., Crowns in Pediatric Dentistry: A Review, J. Adv. Med. Dent. Sci. Res., 2016, 4(2), 41–46. Search in Google Scholar

Grimsdottir M.R., Gjerdet N.R., Hensten-Pettersen A., Composition and in Vitro Corrosion of Orthodontic Appliances, Am. J. Orthod. Dentofacial Orthop., 1992, 101, 525–532. Search in Google Scholar

Hickel R., Kaaden C., Paschos E., Buerkle V., García-Godoy F., Manhart J., Longevity of Occlusally-Stressed Restorations in Posterior Primary Teeth, Am. J. Dent., 2005, 18, 198–211. Search in Google Scholar

Innes N.P.T., Ricketts D., Chong L.Y., Keightley A.J., Lamont T., Santamaria R.M., Preformed Crowns for Decayed Primary Molar Teeth, Cochrane Database Syst. Rev., 2015, 12 (12), CD005512. Search in Google Scholar

Keinan D., Mass E., Zilberman U., Absorption of Nickel, Chromium, and Iron by the Root Surface of Primary Molars Covered with Stainless Steel Crowns, Int. J. Dent., 2010, 326124. Search in Google Scholar

Khatoon Z., McTiernan C.D., Suuronen E.J., Mah T.-F., Alarcon E.I., Bacterial Biofilm Formation on Implantable Devices and Approaches to Its Treatment and Prevention, Heliyon, 2018, 4, e01067. Search in Google Scholar

Koo H., Xiao J., Klein M.I., Jeon J.G., Exopolysaccharides Produced by Streptococcus Mutans Glucosyltransferases Modulate the Establishment of Microcolonies within Multispecies Biofilms, J. Bacteriol., 2010, 192, 3024–3032. Search in Google Scholar

Kosior P., Nikodem A., Kozuń M., Dudek K., Janeczek M., Dobrzyński M., The assessment of temperature amplitude arising during the implant bed formation in relation to variable preparation parameters – in vitro study, Acta Bioeng. Biomech., 2021, 23 (3), 163–173. Search in Google Scholar

Kulkarni P., Agrawal S., Bansal A., Jain A., Tiwari U., Anand A., Assessment of Nickel Release from Various Dental Appliances Used Routinely in Pediatric Dentistry, Indian J. Dent., 2016, 7, 81–85. Search in Google Scholar

Lin Y.-T.J., Chou C.-C., Hsu C.-Y.S., Effects of Lactobacillus Casei Shirota Intake on Caries Risk in Children, J. Dent. Sci., 2017, 12, 179–184. Search in Google Scholar

Menek N., Başaran S., Karaman Y., Ceylan G., Tunç E.S., Investigation of Nickel Ion Release from Stainless Steel Crowns by Square Wave Voltammetry, Int. J. Electrochem. Sci., 2012, 7, 6465–6471. Search in Google Scholar

Murata R.M., Branco-de-Almeida L.S., Franco E.M., Yatsuda R., dos Santos M.H., de Alencar S.M., Koo H., Rosalen P.L., Inhibition of Streptococcus Mutans Biofilm Accumulation and Development of Dental Caries in Vivo by 7-Epiclusianone and Fluoride, Biofouling, 2010, 26, 865–872. Search in Google Scholar

Ogawa A., Furukawa S., Fujita S., Mitobe J., Kawarai T., Narisawa N., Sekizuka T., Kuroda M., Ochiai K., Ogihara H., Kosono A., Yoneda S., Watanabe H., Morinaga Y., Uematsu H., Senpuku H., Inhibition of Streptococcus Mutans Biofilm Formation by Streptococcus Salivarius FruA, Appl. Environ. Microbiol., 2011, 77, 1572–1580. Search in Google Scholar

Olegário I.C., Bresolin C.R., Pássaro A.L., Araujo M.P., Hesse D., Mendes F.M., Raggio D.P., Stainless Steel Crown vs. Bulk Fill Composites for the Restoration of Primary Molars Post-pulpectomy: 1-year Survival and Acceptance Results of a Randomized Clinical Trial, Int. J. Paediatr. Dent., 2022, 32, 11–21. Search in Google Scholar

Papaioannou W., Gizani S., Nassika M., Kontou E., Nakou M., Adhesion of Streptococcus Mutans to Different Types of Brackets, Angle Orthod., 2007, 77, 1090–1095. Search in Google Scholar

PN-EN ISO 10993-5:2009 Biological Evalution of Medical Devices – Part 5: Tests for In Vitro Cytotoxicity. 2009. Search in Google Scholar

Reśliński A., Mikucka A., Szmytkowski J., Głowacka K., Szczęsny W., Gospodarek E., Dąbrowiecki S., Biofilm Detection on the Surface of Hernia Mesh Implants, Adv. Clin. Exp. Med., 2010, 19, 685–690. Search in Google Scholar

Roberts J.F., Attari N., Sherriff M., The Survival of Resin Modified Glass Ionomer and Stainless Steel Crown Restorations in Primary Molars, Placed in a Specialist Paediatric Dental Practice, Br. Dent. J., 2005, 198, 427–431. Search in Google Scholar

Roberts J.F., Attari N., Sherriff M., The Survival of Resin Modified Glass Ionomer and Stainless Steel Crown Restorations in Primary Molars, Placed in a Specialist Paediatric Dental Practice, Br. Dent. J., 2005, 198, 427–431. Search in Google Scholar

Różalska B., Sadowska B., Więckowska M., Rudnicka W., Detection of Bacterial Biofilm on Medical Biomaterials, Med. Dosw. Mikrobiol., 1998, 50, 115–122. Search in Google Scholar

Sajjanshetty S., Patil P.S., Hugar D., Rajkumar K., Pediatric Preformed Metal Crowns – An Update, J. Dent. Allied Sci., 2013, 2 (1), 29–32. Search in Google Scholar

Schüler I.M., Hiller M., Roloff T., Kühnisch J., Heinrich-Weltzien R., Clinical Success of Stainless Steel Crowns Placed under General Anaesthesia in Primary Molars: An Observational Follow up Study, J. Dent., 2014, 42, 1396–1403. Search in Google Scholar

Solis-Velazquez O.A., Gutiérrez-Lomelí M., Guerreo-Medina P.J., Rosas-García M. de L., Iñiguez-Moreno M., Avila-Novoa M.G., Nosocomial Pathogen Biofilms on Biomaterials: Different Growth Medium Conditions and Components of Biofilms Produced in Vitro, J. Microbiol. Immunol. Infect., 2021, 54, 1038–1047. Search in Google Scholar

Sztyler K., Wiglusz R.J., Dobrzyński M., Review on Preformed Crowns in Pediatric Dentistry – The Composition and Application, Materials, 2022, 15, 2081. Search in Google Scholar

Szymonowicz M., Rusak A., Pajączkowska M., Nowicka J., Wiśniewska K., Żywicka B., Rybak Z., Dobrzyński M., Assessment of cytotoxic and antimicrobial activity of selected gingival haemostatic agents – in vitro study, Acta Bioeng. Biomech., 2020, 22 (3), 185–198. Search in Google Scholar

Tiwari S., Saxena S., Effects of pH and Time on Nickel Ion Release from Pediatric Stainless-Steel Crowns: An In-Vitro Comparative Study, J. Pharm. Bioallied. Sci., 2022 Jul., 14 (Suppl. 1), S545–S549. Search in Google Scholar

Xiao J., Koo H., Structural Organization and Dynamics of Exopolysaccharide Matrix and Microcolonies Formation by Streptococcus Mutans in Biofilms, J. Appl. Microbiol., 2010, 108, 2103–2113. Search in Google Scholar