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Abstract(s)
O objetivo deste trabalho foi apresentar uma compilação de dados reportados na literatura
sobre à resistência à corrosão de ligas metálicas utilizadas para produzir mini-implantes na
ancoragem ortodôntica temporária. Este artigo apresenta uma revisão integrativa da literatura,
realizada a partir de uma pesquisa de artigos publicados entre 2006 a 2017 nas bases de dados
Medline/PubMed, Science Direct (Elsevier), B-on via Universidade Fernando Pessoa. Os
termos utilizados para busca foram corrosion” AND “mini-implants”, OR “corrosion And
mini implants AND steel”, OR “mini implants AND steel”, OR “steel And F138”, OR “screw
And corrosion And implants AND steel”, OR “stainless steel AND corrosion.
Os resultados apresentados pelos testes eletroquímicos e microscópicos para ligas de titânio e
aço inoxidável usados para fabricação de mini-implantes ortodônticos revelam uma baixa
resistência à corrosão destes materiais em condições encontradas na cavidade oral. Dentre
todas as ligas metálicas utilizadas atualmente a liga de Ti6Al4V apresentou uma melhor
resistência à corrosão em saliva artificial. Entretanto, a corrosão destas ligas ocorre em
contato com altas concentrações de flúor tendo como consequência a libertação de íons de Al
e V, tóxicos para os tecidos peri implantares. A presença de biofilme e substâncias ácidas,
também são fatores capazes de diminuir o pH da cavidade oral, podendo acelerar o processo
de corrosão das ligas. Novas ligas metálicas tem sido desenvolvidas para a fabricação de
mini-implantes sendo o necessário a caracterização destes materiais em relação à resistência à
corrosão e biocompatilidade antes da indicação para uso clínico.
The objective of this work was to perform a literature review on the corrosion resistance of alloys used to produce mini-implants for temporary orthodontic anchorage. A Medline/Pubmed and Sciencedirect bibliographical review was carried out via Universidade Fernando Pessoa. The search items were used: corrosion” AND “mini-implants”, OR “corrosion And mini implants AND steel”, OR “mini implants AND steel”, OR “steel AND F138”, OR “screw And corrosion AND implants AND steel”, OR “stainless steel AND corrosion. The results reported from electrochemical and microscopic studies revealed a decrease in corrosion resistance of stainless steel and titanium alloys used for mini-implants in different oral conditions. Among all the current alloys for mini-implants, Ti6Al4V showed a better corrosion resistance in artificial saliva although their corrosion resistance decreased when immersed in solutions containing a high F concentration. As a result, Al and V ions are released from titanium alloys that can be toxic for peri-implant tissues. Also, acidic substances from therapeutic solutions, dietary and biofilms can decrease the pH of the human saliva that can negatively affect the corrosion. In fact, novel stainless steel has been developed for mini-implants and therefore studies on corrosion resistance and biocompatibility should be performed on such alloys to avoid detrimental effects to the patients.
The objective of this work was to perform a literature review on the corrosion resistance of alloys used to produce mini-implants for temporary orthodontic anchorage. A Medline/Pubmed and Sciencedirect bibliographical review was carried out via Universidade Fernando Pessoa. The search items were used: corrosion” AND “mini-implants”, OR “corrosion And mini implants AND steel”, OR “mini implants AND steel”, OR “steel AND F138”, OR “screw And corrosion AND implants AND steel”, OR “stainless steel AND corrosion. The results reported from electrochemical and microscopic studies revealed a decrease in corrosion resistance of stainless steel and titanium alloys used for mini-implants in different oral conditions. Among all the current alloys for mini-implants, Ti6Al4V showed a better corrosion resistance in artificial saliva although their corrosion resistance decreased when immersed in solutions containing a high F concentration. As a result, Al and V ions are released from titanium alloys that can be toxic for peri-implant tissues. Also, acidic substances from therapeutic solutions, dietary and biofilms can decrease the pH of the human saliva that can negatively affect the corrosion. In fact, novel stainless steel has been developed for mini-implants and therefore studies on corrosion resistance and biocompatibility should be performed on such alloys to avoid detrimental effects to the patients.
Description
Keywords
Corrosão Mini implante Dispositivo de ancoragem temporário Aço inoxidável F138 Titânio Corrosion Mini-implants Temporary anchorage devices Stainless steel F-138 Titanium