Titania nanopillars with different heights and diameters (<100 nm) were patterned on titanium surfaces using a through-mask anodization technique. Two oral bacteria, that is, Streptococcus mitis (NCTC 10712) and Fusobacterium nucleatum (ATCC 25586), were used to study the bacterial attachment to nanopatterned titanium surfaces with and without saliva coating at different time points up to 4 h. The adhesion of both bacteria was decreased on 90-nm high nanopillars compared with both 15-nm high nanopillars and polished titanium surfaces, although this effect was significantly reduced with saliva coating, indicating a strong 'masking' effect of saliva on nanotopography-mediated bacterial adhesion. The results demonstrate that nanopatterning may be used to control bacterial attachment to titanium implant surfaces, but it is evident that for oral implant applications, saliva coating may reduce the desired topographical cues.
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September 2013
Research Article|
September 01 2013
Adhesion of Streptococcus mitis and Fusobacterium nucleatum on nanopatterned titanium surfaces
James Pang, BDS;
James Pang, BDS
School of Oral & Dental Sciences, University of Bristol, Bristol, UK
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Terje SjÖstrÖm, PhD;
Terje SjÖstrÖm, PhD
School of Oral & Dental Sciences, University of Bristol, Bristol, UK
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David Dymock, PhD;
David Dymock, PhD
School of Oral & Dental Sciences, University of Bristol, Bristol, UK
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Bo Su, PhD
Bo Su, PhD
*
School of Oral & Dental Sciences, University of Bristol, Bristol, UK
*Corresponding author e-mail address: b.su@bristol.ac.uk
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*Corresponding author e-mail address: b.su@bristol.ac.uk
Publisher: Emerald Publishing
Received:
December 19 2012
Accepted:
April 03 2013
Online ISSN: 2045-9866
Print ISSN: 2045-9858
ICE Publishing: All rights reserved
2013
Bioinspired, Biomimetic and Nanobiomaterials (2013) 2 (3): 117–122.
Article history
Received:
December 19 2012
Accepted:
April 03 2013
Citation
Pang J, SjÖstrÖm T, Dymock D, Su B (2013), "Adhesion of Streptococcus mitis and Fusobacterium nucleatum on nanopatterned titanium surfaces". Bioinspired, Biomimetic and Nanobiomaterials, Vol. 2 No. 3 pp. 117–122, doi: https://doi.org/10.1680/bbn.12.00030
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