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In vivo biocompatibility versus degree of conversion of resin‐reinforced cements in different time periods
Authors:Rogério Lacerda‐Santos  Maria Isabel Serpa Simões De Farias  Fabiola Galbiatti De Carvalho  Matheus Melo Pithon  Pollianna Muniz Alves  Orlando Motohiro Tanaka  Gymenna Maria Tenório Guênes
Affiliation:1. Department of Orthodontics and Clinic, Federal University of Campina Grande, Santa Cecília, CEP;2. Department of Orthodontics, State University of Sudoeste da Bahia, Bahia, Brazil, Jequié ‐ BA, CEP;3. Department of Patology, State University of Paraíba, Paraíba, Brazil, Rua Baraúnas, Campina Grande ‐ PB, CEP;4. Department of Orthodontics, Pontifical Catholic University of Paraná, Paraná, Brazil, Rua Imaculada Concei??o, Curitiba ‐ PR, CEP
Abstract:This study focused on test the null hypothesis that there is no difference between the degree of conversion and biocompatibility of different resin reinforced glass ionomer cements (RRGICs). Forty‐eight male Wistar rats were used, distributed into four groups (n = 12), as follows: Group C (Control, polyethylene), Group FOB (Fuji Ortho Band), Group UBL (Ultra band Lok), and Group MCG (Multicure Glass), in subcutaneous tissue. The events of edema, necrosis, granulation tissue, multinuclear giant cells, young fibroblasts, and collagen formation were analyzed at 7, 15, and 30 days. The degree of conversion was evaluated by the Fourier method. Biocompatibility and degree of conversion were assessed using the Kruskal–Wallis and Dunn tests, and ANOVA and Tukey's test, respectively (P < 0.05). It was observed that, there was significant difference between Groups FOB and UBL for the presence of young fibroblasts at 15 days (P = 0.034) and between the Control and MCG Groups for the presence of multinucleated giant cells at 30 days (P = 0.009). Monomer conversion increased progressively until day 30, with significant difference between Group FOB and Groups UBL and MCG (P = 0.013) at 15 days. The null hypothesis was partially accepted, Fuji Ortho Band showed a less monomer conversion and a smaller number of young fibroblasts in the time of 15 days. Microsc. Res. Tech. 77:335–340, 2014. © 2014 Wiley Periodicals, Inc.
Keywords:glass ionomer cements  biocompatibility  orthodontics
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