Literature DB >> 10559750

Effects of sterilization processes on NiTi alloy: surface characterization.

B Thierry1, M Tabrizian, O Savadogo, L Yahia.   

Abstract

Sterilization is required for using any device in contact with the human body. Numerous authors have studied device properties after sterilization and reported on bulk and surface modifications of many materials after processing. These surface modifications may in turn influence device biocompatibility. Still, data are missing on the effect of sterilization procedures on new biomaterials such as nickel-titanium (NiTi). Herein we report on the effect of dry heat, steam autoclaving, ethylene oxide, peracetic acid, and plasma-based sterilization techniques on the surface properties of NiTi. After processing electropolished NiTi disks with these techniques, surface analyses were performed by Auger electron spectroscopy (AES), atomic force microscopy (AFM), and contact angle measurements. AES analyses revealed a higher Ni concentration (6-7 vs. 1%) and a slightly thicker oxide layer on the surface for heat and ethylene oxide processed materials. Studies of surface topography by AFM showed up to a threefold increase of the surface roughness when disks were dry heat sterilized. An increase of the surface energy of up to 100% was calculated for plasma treated surfaces. Our results point out that some surface modifications are induced by sterilization procedures. Further work is required to assess the effect of these modifications on biocompatibility, and to determine the most appropriate methods to sterilize NiTi. Copyright 2000 John Wiley & Sons, Inc.

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Year:  2000        PMID: 10559750     DOI: 10.1002/(sici)1097-4636(200001)49:1<88::aid-jbm11>3.0.co;2-i

Source DB:  PubMed          Journal:  J Biomed Mater Res        ISSN: 0021-9304


  6 in total

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Authors:  Ryszard Rokicki; Waseem Haider; Tadeusz Hryniewicz
Journal:  J Mater Sci Mater Med       Date:  2012-06-03       Impact factor: 3.896

2.  Laser welding of NiTi orthodontic archwires for selective force application.

Authors:  P Sevilla; F Martorell; C Libenson; J A Planell; F J Gil
Journal:  J Mater Sci Mater Med       Date:  2007-07-10       Impact factor: 3.896

3.  Enhanced Biocompatibility of Porous Nitinol.

Authors:  Norman Munroe; Chandan Pulletikurthi; Waseem Haider
Journal:  J Mater Eng Perform       Date:  2009-08-01       Impact factor: 1.819

4.  Cellular attachment and differentiation on titania nanotubes exposed to air- or nitrogen-based non-thermal atmospheric pressure plasma.

Authors:  Hye Yeon Seo; Jae-Sung Kwon; Yu-Ri Choi; Kwang-Mahn Kim; Eun Ha Choi; Kyoung-Nam Kim
Journal:  PLoS One       Date:  2014-11-24       Impact factor: 3.240

5.  Ion Release and Surface Characterization of Nanostructured Nitinol during Long-Term Testing.

Authors:  Elena O Nasakina; Maria A Sudarchikova; Konstantin V Sergienko; Sergey V Konushkin; Mikhail A Sevost'yanov
Journal:  Nanomaterials (Basel)       Date:  2019-11-05       Impact factor: 5.076

6.  An improved process for the fabrication and surface treatment of custom-made titanium cranioplasty implants informed by surface analysis.

Authors:  Milovan Joe Cardona; Catherine Turner; Calum Ross; Elaine Baird; Richard Anthony Black
Journal:  J Biomater Appl       Date:  2020-09-11       Impact factor: 2.646

  6 in total

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