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Journal of ProsthodonticsVolume 23, Issue 3, April 2014, Pages 221-226

Corrosive and cytotoxic properties of compact specimens and microparticles of Ni-Cr dental alloy(Article)

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  • aDental Clinic, Military Medical Academy, Belgrade, Serbia
  • bInstitute for Medical Research, Military Medical Academy, Belgrade, Serbia
  • cMilitary Technical Institute, Belgrade, Serbia
  • dPoison Control Center, Military Medical Academy, Belgrade, Serbia
  • eMedical Faculty of the Military Medical Academy, University of Defense, Military Medical Academy, Belgrade, Serbia

Abstract

Purpose: Nickel-chromium (Ni-Cr) dental alloys have been widely used in prosthodontic practice, but there is a permanent concern about their biocompatibility due to the release of metal ions. This is especially important when Ni-Cr metal microparticles are incorporated into gingival tissue during prosthodontic procedures. Therefore, the aim of this study was to examine and compare the corrosion and cytotoxic properties of compact specimens and microparticles of Ni-Cr dental alloy. Materials and Methods: Ni-Cr alloy, Remanium CSe bars (4 mm diameter), were made by the standard casting method and then cut into 0.5-mm-thick disks. Metal particles were obtained by scraping the bars using a diamond instrument for crown preparation. The microstructure was observed by an optical microscope. Quantitative determination and morphological and dimensional characterization of metal particles were carried out by a scanning electron microscope and Leica Application Suite software for image analysis. Corrosion was studied by conditioning the alloy specimens in the RPMI 1640 medium, containing 10% fetal calf serum in an incubator with 5% CO2 for 72 hours at 37°C. Inductively coupled plasma-optical emission spectrometry was used to assess metal ion release. The cytotoxity of conditioning medium (CM) was investigated on L929 cells using an MTT test. One-way ANOVA was used for statistical analysis. Results: After casting, the microstructure of the Remanium CSe compact specimen composed of Ni, Cr, Mo, Si, Fe, Al, and Co had a typical dendritic structure. Alloy microparticles had an irregular shape with a wide size range: from less than 1 μm to more than 100 μm. The release of metal ions, especially Ni and Mo from microparticles, was significantly higher, compared to the compact alloy specimen. The CM prepared from compact alloy was not cytotoxic at any tested dilutions, whereas CM from alloy microparticles showed dose-dependent cytotoxicity (90% CM and 45% CM versus control; p < 0.005). Conclusion: Ni-Cr microparticles showed less corrosion resistance and lower biocompatibility than compact alloy. This could affect health on long-term exposure, especially in sensitized individuals. © 2013 by the American College of Prosthodontists.

Author keywords

AlloyCorrosionCytotoxicityMicroparticlesNi-Cr

Indexed keywords

EMTREE drug terms:aluminumbiomedical and dental materialschromiumchromium derivativecobaltdiamondironmolybdenumnickelsilicon
EMTREE medical terms:animalatomic absorption spectrometrycell linecell shapecell survivalchemistrycomparative studycorrosiondrug effectsfibroblastimage processingmaterials testingmouseparticle sizeproceduresscanning electron microscopysurface property
MeSH:AluminumAnimalsCell LineCell ShapeCell SurvivalChromiumChromium AlloysCobaltCorrosionDental Casting InvestmentDiamondFibroblastsImage Processing, Computer-AssistedIronMaterials TestingMiceMicroscopy, Electron, ScanningMolybdenumNickelParticle SizeSiliconSpectrophotometry, AtomicSurface Properties

Chemicals and CAS Registry Numbers:

aluminum, 7429-90-5; chromium, 16065-83-1, 7440-47-3, 14092-98-9; cobalt, 7440-48-4; diamond, 7782-40-3; iron, 14093-02-8, 53858-86-9, 7439-89-6; molybdenum, 7439-98-7; nickel, 7440-02-0; silicon, 7440-21-3;

Aluminum; Chromium; Chromium Alloys; Cobalt; Dental Casting Investment; Diamond; Iron; Molybdenum; Nickel; Silicon

  • ISSN: 1059941X
  • Source Type: Journal
  • Original language: English
  • DOI: 10.1111/jopr.12100
  • PubMed ID: 24118161
  • Document Type: Article
  • Publisher: Blackwell Publishing Inc.

  Ristic, L.; Military Medical Academy, Dental Clinic, Crnotravska 17, Serbia;
© Copyright 2014 Elsevier B.V., All rights reserved.

Cited by 13 documents

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View details of all 13 citations
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