Literature DB >> 21288031

Bacterial retention on superhydrophobic titanium surfaces fabricated by femtosecond laser ablation.

Elena Fadeeva1, Vi Khanh Truong, Meike Stiesch, Boris N Chichkov, Russell J Crawford, James Wang, Elena P Ivanova.   

Abstract

Two-tier micro- and nanoscale quasi-periodic self-organized structures, mimicking the surface of a lotus Nelumbo nucifera leaf, were fabricated on titanium surfaces using femtosecond laser ablation. The first tier consisted of large grainlike convex features between 10 and 20 μm in size. The second tier existed on the surface of these grains, where 200 nm (or less) wide irregular undulations were present. The introduction of the biomimetic surface patterns significantly transformed the surface wettabilty of the titanium surface. The original surface possessed a water contact angle of θ(W) 73 ± 3°, whereas the laser-treated titanium surface became superhydrophobic, with a water contact angle of θ(W) 166 ± 4°. Investigations of the interaction of S. aureus and P. aeruginosa with these superhydrophobic surfaces at the surface-liquid interface revealed a highly selective retention pattern for two pathogenic bacteria. While S. aureus cells were able to successfully colonize the superhydrophobic titanium surfaces, no P. aeruginosa cells were able to attach to the surface (i.e., any attached bacterial cells were below the estimated lower detection limit).

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Year:  2011        PMID: 21288031     DOI: 10.1021/la104607g

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  50 in total

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Review 5.  Mechano-bactericidal actions of nanostructured surfaces.

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7.  Micro/nanostructures formation by femtosecond laser surface processing on amorphous and polycrystalline Ni60Nb40.

Authors:  Edwin Peng; Alfred Tsubaki; Craig A Zuhlke; Meiyu Wang; Ryan Bell; Michael J Lucis; Troy P Anderson; Dennis R Alexander; George Gogos; Jeffrey E Shield
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8.  Antibacterial activity on superhydrophobic titania nanotube arrays.

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Review 9.  Antibacterial and Antiviral Functional Materials: Chemistry and Biological Activity toward Tackling COVID-19-like Pandemics.

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Review 10.  Superhydrophobic materials for biomedical applications.

Authors:  Eric J Falde; Stefan T Yohe; Yolonda L Colson; Mark W Grinstaff
Journal:  Biomaterials       Date:  2016-07-09       Impact factor: 12.479

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