
Orthodontic wires containing nickel have been implicated in allergic reactions. The potential for orthodontic wires to cause allergic reactions is related to the pattern and mode of corrosion with subsequent release of metal ions, such as nickel, into the oral cavity. The purpose of this study was to determine if there is a significant difference in the corrosive potential of stainless steel, nickel titanium, nitride-coated nickel titanium, epoxy-coated nickel titanium, and titanium orthodontic wires. At least two specimens of each wire were subjected to potentiostatic anodic dissolution in 0.9% NaCl solution with neutral pH at room temperature. Using a Wenking MP 95 potentiostat and an electrochemical corrosion cell, the breakdown potential of each wire was determined. Photographs were taken of the wire speci mens using a scanning electron microscope, and surface changes were qualitatively evaluated. The breakdown potentials of stainless steel, two nickel titanium wires, nitride-coated nickel titanium, epoxy-coated nickel titanium, and titanium were 400 mV, 300 mV, 750 mV, 300 mV, 1800 mV, and >2000 mV, respectively. SEM photographs revealed that some nickel titanium and stainless steel wires were susceptible to pitting and localized corrosion. The results indicate that corrosion occurred readily in stainless steel. Variability in breakdown potential of nickel titanium alloy wires differed across vendors' wires. The nitride coating did not affect the corrosion of the alloy, but epoxy coating decreased corrosion. Titanium wires and epoxy-coated nickel titanium wires exhibited the least corrosive potential. For patients allergic to nickel, the use of titanium or epoxy-coated wires during orthodontic treatment is recommended.
Titanium, Epoxy Resins, Surface Properties, Temperature, Hydrogen-Ion Concentration, Stainless Steel, Corrosion, Coated Materials, Biocompatible, Solubility, Nickel, Materials Testing, Electrochemistry, Hypersensitivity, Microscopy, Electron, Scanning, Orthodontic Wires, Potentiometry, Humans, Electrodes, Dental Alloys
Titanium, Epoxy Resins, Surface Properties, Temperature, Hydrogen-Ion Concentration, Stainless Steel, Corrosion, Coated Materials, Biocompatible, Solubility, Nickel, Materials Testing, Electrochemistry, Hypersensitivity, Microscopy, Electron, Scanning, Orthodontic Wires, Potentiometry, Humans, Electrodes, Dental Alloys
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