4.5 Article

The antibacterial properties and biocompatibility of a Ti-Cu sintered alloy for biomedical application

Journal

BIOMEDICAL MATERIALS
Volume 9, Issue 2, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1748-6041/9/2/025013

Keywords

biocompatibility; antibacterial activity; Ti-Cu alloy; AKP; corrosion property; implant materials

Funding

  1. National Key Basic Research Program of China [2012CB619100]
  2. National Natural Science Foundation [81071262/H1820]
  3. Heilongjiang Universities' science and technology innovation team program [2012TD010]
  4. Nature Science Foundation of Heilongjiang Province for Distinguished Young Scholars [JC201205]

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The antibacterial activity, the cytotoxicity and the cell function of a sintered Ti-10 wt% Cu alloy were investigated in order to assess the suitability of the alloy for biomedical application. The antibacterial activity of the alloy was investigated by a plate-count method and the cytotoxicity was studied by examining the MG63 cell response by CCK8 assessment. The cell function was monitored by measuring the AKP activity. The Cu ion released from the Ti-Cu alloy was also measured by an inductively coupled plasma spectrometer at different immersion durations. The results show that the antibacterial rates of the alloy against Escherichia coli and Staphylococcus aureus increase with an increase in the incubation duration. After 7 h of incubation, the alloy showed an antibacterial rate of 91.66% against S. aureus and 99.01% against E. coli. With a further extension of incubation time to 24 h, the antibacterial rate increased to 100% against S. aureus and 99.93% against E. coli. No cytotoxicity was observed on the alloy by a CKK8 test during three days of incubation in comparison with commercially available pure titanium (cp-Ti). AKP test results showed a significantly high AKP value (p = 0.001 < 0.01) on the Ti-Cu alloy on day 1. The Cu ion release was thought to contribute to the strong antibacterial property, but the Cu ion did not lead to cell cytotoxicity. Strong antibacterial activity and good cell biocompatibility suggest that the Ti-Cu alloy could reduce bacterial infection and have a potential application as an implant material.

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