RESUMEN
OBJECTIVE:: To evaluate and compare in vitro cytotoxicity and corrosion resistance of mini-implants from three different commercial brands used for orthodontic anchorage. METHODS:: Six mini-implants (Conexão(tm), Neodent(tm) and SIN(tm)) were separately immersed in artificial saliva (pH 6.76) for 30 and 60 days. The cytotoxicity of the corrosion extracts was assessed in L929 cell cultures using the violet crystal and MTT assays, as well as cell morphology under light microscopy. Metal surface characteristics before and after immersion in artificial saliva were assessed by means of scanning electron microscopy (SEM). The samples underwent atomic absorption spectrophotometry to determine the concentrations of aluminum and vanadium ions, constituent elements of the alloy that present potential toxicity. For statistical analysis, one-way ANOVA/Bonferroni tests were used for comparisons among groups with p < 0.05 considered significant. Statistical analysis was carried out with Graph Pad PRISM software Version 4.0. RESULTS:: No changes in cell viability or morphology were observed. Mini-implants SEM images revealed smooth surfaces with no obvious traces of corrosion. The extracts assessed by means of atomic absorption spectrophotometry presented concentrations of aluminum and vanadium ions below 1.0 µg/mL and 0.5 µg/mL, respectively. CONCLUSION:: Orthodontic mini-implants manufactured by Conexão(tm), Neodent(tm) and SIN(tm) present high corrosion resistance and are not cytotoxic.
Asunto(s)
Implantes Dentales/efectos adversos , Aparatos Ortodóncicos/efectos adversos , Aluminio/análisis , Análisis de Varianza , Corrosión , Citotoxinas/análisis , Microscopía Electrónica de Rastreo , Diseño de Aparato Ortodóncico , Propiedades de Superficie , Vanadio/análisisRESUMEN
ABSTRACT Objective: To evaluate and compare in vitro cytotoxicity and corrosion resistance of mini-implants from three different commercial brands used for orthodontic anchorage. Methods: Six mini-implants (Conexão(tm), Neodent(tm) and SIN(tm)) were separately immersed in artificial saliva (pH 6.76) for 30 and 60 days. The cytotoxicity of the corrosion extracts was assessed in L929 cell cultures using the violet crystal and MTT assays, as well as cell morphology under light microscopy. Metal surface characteristics before and after immersion in artificial saliva were assessed by means of scanning electron microscopy (SEM). The samples underwent atomic absorption spectrophotometry to determine the concentrations of aluminum and vanadium ions, constituent elements of the alloy that present potential toxicity. For statistical analysis, one-way ANOVA/Bonferroni tests were used for comparisons among groups with p < 0.05 considered significant. Statistical analysis was carried out with Graph Pad PRISM software Version 4.0. Results: No changes in cell viability or morphology were observed. Mini-implants SEM images revealed smooth surfaces with no obvious traces of corrosion. The extracts assessed by means of atomic absorption spectrophotometry presented concentrations of aluminum and vanadium ions below 1.0 µg/mL and 0.5 µg/mL, respectively. Conclusion: Orthodontic mini-implants manufactured by Conexão(tm), Neodent(tm) and SIN(tm) present high corrosion resistance and are not cytotoxic.
RESUMO Objetivo: avaliar, in vitro, e comparar a citotoxicidade e a resistência à corrosão de mini-implantes de três marcas comerciais diferentes, utilizados para ancoragem ortodôntica. Métodos: seis mini-implantes fabricados pelas empresas Conexão(r), Neodent(r) e SIN(r) foram imersos, separadamente, em saliva artificial (pH = 6,76), por 30 e 60 dias, de forma a obter os extratos da corrosão. A citotoxicidade dos extratos foi avaliada em cultura de células L929, empregando-se a análise de ensaios do cristal violeta e MTT, bem como da morfologia celular sob microscopia óptica. As características da superfície do metal antes e após a imersão em saliva artificial foram avaliadas usando microscopia eletrônica de varredura. Os extratos foram submetidos a espectrofotometria de absorção atômica, para determinar as concentrações dos íons alumínio e vanádio, elementos constituintes da liga e que apresentam toxicidade em potencial. Para análise estatística, os testes one-way ANOVA/Bonferroni foram usados para comparação entre os grupos, com p < 0,05 sendo considerado significativo. A análise estatística foi realizada com o programa Graph Pad PRISM v. 4.0. Resultados: não foi observada alteração na viabilidade ou morfologia celular após a exposição dos mini-implantes aos extratos. A análise dos mini-implantes por microscopia eletrônica de varredura revelou superfícies lisas e sem traços evidentes de corrosão. Os extratos analisados usando espectrofotometria de absorção atômica apresentaram concentrações de íons alumínio e vanádio inferiores a 1,0 µg/ml e 0,5 µg/ml, respectivamente. Conclusão: os mini-implantes fabricados pelas empresas Conexão(r), Neodent(r) e SIN(r) apresentam alta resistência à corrosão e não são citotóxicos.