Kekasaran Permukaan Resin Komposit Nanofilled dan Nanohybrid Setelah Paparan Asap Rokok Kretek
Downloads
Background: Cigarette smoking is a public health problem that may influence physical properties of dental composites. Surface roughness is one of the physical properties of restorative materials that can influence their success. The use of nanofilled and nanohybrid composites in dentistry has substantially increased over the past few years. Purpose: The purpose of this study was to evaluate the surface roughness of nanofilled and nanohybrid composite resins exposed to kretek cigarette smoke. Methods: Twelve cylindrical specimens were prepared of each material and divided into two groups (n=6). For the control groups, the specimens were immersed in distilled water for 24 hours at 37oC and the water was renewed daily. For the experimental groups, the specimens were exposed daily to kretek cigarette smoke, then washed and stored in distilled water at 37oC. After 21 days, specimens were measured using a Surface Roughness Tester and the data was statistically analyzed. Result: Independent-T Test revealed that there were statistically significant differences in the surface roughness between control and experimental groups both nanofilled and nanohybrid, and between experimental groups nanofilled and nanohybrid. Conclusion: The exposure to kretek cigarette smoke can significantly increase the surface roughness of nanohybrid composites more than nanofilled composites.
Erdemir U, Yildiz E, Eren MM, Ozel S. 2013. Surface hardness evaluation of different composite resin materials: influence of sports and energy drinks immersion after a short-term period. J Appl Oral Sci; 21(2): 124-30.
Sakaguchi RL, Powers JM. 2012. Craig's Restorative Dental Materials. 13th ed. Philadelphia: Elsevier Mosby, p.143;165-9;179.
Mathias P, Santos SRB, Aguiar TR, Santos PRB, Cavalcanti AN. 2014. Cigarette smoke: effects on water sorption and solubility of restorative dental composites. Academy of General Dentistry, p.54-5.
Aguiar TR, Gaglianone LA, Mathias P. 2014. An Overview of the Impact of Lifestyle Behaviors on the Operative Dentistry. J Interdiscipl Med Dent Sci; 2(4): 1, 4.
InfoDATIN. 2015. Perilaku Merokok Masyarakat Indonesia: Berdasarkan Riskesdas 2007 dan 2013. Available at: http://www.depkes.go.id/resources/download/pusdatin/infodatin/infodatin-hari-tanpa-tembakau-sedunia.pdf. Diakses pada 10 Mei 2016, p.2-4.
Bertoldo CE, Miranda D, Souza-Junior EJ, Aguiar FHB, Lima DANL, Ferreira RL, Claes I, Lovadino JR. 2011. Surface hardness and color change of dental enamel exposed to cigarette smoke. International Journal of Dental Clinics; 3(4): 1.
Polzin GM, Stanfill SB, Brown CR, Ashley DL, Watson CH. 2007. Determination of eugenol, anethole, and coumarin in the mainstream cigarette smoke of Indonesian clove cigarettes. Food and Chemical Toxicology; 45: 1948-51.
Jonathan S. 2007. Launching for Marketer and Entrepreneur. Jakarta: PT Gramedia Pustaka Utama, p.173.
Darvell BW. 2009. Materials Science for Dentistry. 9th ed. Cambridge: Woodhead Publishing, p.218.
Tanthanuch S, Kukiattrakoon B, Siriporananon C, Ornprasert N, Mettasitthikorn W, Likhitpreeda S, Waewsanga S. 2014. The effect of different beverages on surface hardness of nanohybrid resin composite and giomer. J Conserv Dent; 17(3): 261.
Soetojo A. 2013. Penggunaan Resin Komposit dalam Bidang Konservasi Gigi. Surabaya: Revka Petra Media, p.1;30;34.
Eid HA, Togoo RA, Saleh AA, Sumanth CR. 2013. Surface Topography of Composite Restorative Materials following Ultrasonic Scaling and its Impact on Bacterial Plaque Accumulation: an In-Vitro SEM Study. J Int Oral Health; 5(3): 14.
Oliveira ALBM, Garcia PPNS, Santos PA, Campos JADB. 2010. Surface Roughness and Hardness of a Composite Resin: Influence of Finishing and Polishing and Immersion Methods. Materials Research; 13(3): 410.
Wasilewski MA, Takahashi MK, Kirsten GA, de Souza EM. 2010. Effect of cigarette smoke and whiskey on the color stability of dental composites. American Journal of Dentistry; 23(1): 5.
Hamano N, Chiang YC, Nyamaa I, Yamaguchi H, Ino S, Hickel R, Kunzelmann KH. 2011. Effect of different surface treatments on the repair strength of a nanofilled resin-based composite. Dental Materials Journal; 30(4): 543.
Boyle P, Gray N, Henningfield J, Seffrin J, Zatonski W (ed.). 2004. Tobacco and Public Health: Science and Policy. Oxford: Oxford University Press, p. 53,62.
Anusavice KJ, Shen C, Rawls HR. 2013. Phillip's Science of Dental Materials. 12th ed. St.Louis: Elsevier Saunders, p. 278-87.
Aisya RKN. 2008. Pengaruh Perendaman Obat Kumur Mengandung Eugenia Caryophyllata Oil Terhadap Kekerasan Resin Komposit Tipe Hybrid. Jakarta: Universitas Indonesia, p. 8-9.
van Noort R. 2002. Introduction to Dental Materials. 2nd ed. London: Mosby Elsevier, p.96-7, 109-13.
Maghfiroh H, Nugroho R, Probosari N. 2016. The effect of carbonated beverage to the discoloration of polished and unpolished nanohybrid composite resin. J Dentomacillofac Sci; 1(1): 24.
Tirtosastro A, Murdiyati AS. 2010. Kandungan Kimia Tembakau dan Rokok. Buletin Tanaman Tembakau, Serat & Minyak Industri; 2(1): 38-40.
Alandia-Roman CC, Cruvinel DR, Sousa ABS, Pires-de-Souza FCP, Panzeri H. 2013. Effect of cigarette smoke on color stability and surface roughness of dental composites. Journal of Dentistry; 4IS: e73-4.
Tantanuch S, Kukiattrakoon B, Peerasukprasert T, Chanmanee N, Chaisomboonphun P, Rodklai A. 2016. Surface roughness and erosion of nanohybrid and nanofilled resin composites after immersion in red and white wine. J Conserv Dent; 19(1): 51-55.
Moraes RR, Goncalves LS, Lancellotti AC, Consani S, Correr-Sobrinho L, Sinhoreti MA. 2009. Nanohybrid Resin Composites: Nanofiller Loaded Materials or Traditional Microhybrid Resins. Operative Dentistry; 24(5): 553-4.
CDJ by Unair is licensed under a Creative Commons Attribution 4.0 International License.
1. The journal allows the author to hold the copyright of the article without restrictions.
2. The journal allows the author(s) to retain publishing rights without restrictions