4.8 Article

Understanding long-term silver release from surface modified porous titanium implants

Journal

ACTA BIOMATERIALIA
Volume 58, Issue -, Pages 550-560

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2017.05.048

Keywords

Load-bearing implants; Osteomyelitis; Silver; Infection control; Additive manufacturing

Funding

  1. Washington State University Gap Fund from the Office of Commercialization
  2. National Institute of Arthritis and Musculoskeletal and Skin Diseases of the National Institutes of Health [R01 AR067306-01A1]

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Prevention of orthopedic device related infection (ODRI) using antibiotics has met with limited amount of success and is still a big concern during post-surgery. As an alternative, use of silver as an antibiotic treatment to prevent surgical infections is being used due to the well-established antimicrobial properties of silver. However, in most cases silver is used in particulate form with wound dressings or with short-term devices such as catheters but not with load-bearing implants. We hypothesize that strongly adherent silver to load-bearing implants can offer longer term solution to infection in vivo. Keeping that in mind, the focus of this study was to understand the long term release study of silver ions for a period of minimum 6 months from silver coated surface modified porous titanium implants. Implants were fabricated using a LENS (TM) system, a powder based additive manufacturing technique, with at least 25% volume porosity, with and without TiO2 nanotubes in phosphate buffer saline (pH 7.4) to see if the total release of silver ions is within the toxic limit for human cells. Considering the fact that infection sites may reduce the local pH, silver release was also studied in acetate buffer (pH 5.0) for a period of 4 weeks. Along with that, the osseointegrative properties as well as cytotoxicity of porous titanium implants were assessed in vivo for a period of 12 weeks using a rat distal femur model. In vivo results indicate that porous titanium implants with silver coating show comparable, if not better, biocompatibility and bonding at the bone-implant interface negating any concerns related to toxicity related to silver to normal cells. The current research is based on our recently patented technology, however focused on understanding longer-term silver release to mitigate infection related problems in load-bearing implants that can even arise several months after the surgery. Statement of Significance Prevention of orthopedic device related infection using antibiotics has met with limited success and is still a big concern during post-surgery. Use of silver as an antibiotic treatment to prevent surgical infections is being explored due to the well-established antimicrobial properties of silver. However, in most cases silver is used in particulate form with wound dressings or with short-term devices such as catheters but not with load-bearing implants. We hypothesize that strongly adherent silver to load-bearing implants can offer longer-term solution towards infection in vivo. Keeping that in mind, the focus of this study was to understand the long-term release of silver ions, for a period of minimum 6 months, from silver coated surface modified porous titanium implants. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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