2015
DOI: 10.2147/ijn.s77492
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Binding of plasma proteins to titanium dioxide nanotubes with different diameters

Abstract: Titanium and titanium alloys are considered to be one of the most applicable materials in medical devices because of their suitable properties, most importantly high corrosion resistance and the specific combination of strength with biocompatibility. In order to improve the biocompatibility of titanium surfaces, the current report initially focuses on specifying the topography of titanium dioxide (TiO 2 ) nanotubes (NTs) by electrochemical anodization. The zeta potential (ζ-potential) of… Show more

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Cited by 30 publications
(25 citation statements)
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“…28 Nowadays, the layers of nanotubes biologically embedded in the metal surface by the anodization process are studied for surface modifications because of their chemical stability and structural properties. 25,36 The nanotubes of the TiO 2 layer modify the roughness of the surface and increase the surface area. 6,27,37,38 SEM images (See Figure 1A) show the vertical nanotubes of TiO 2 monolayer self-ordered on the Ti-30Ta alloy surface.…”
Section: Resultsmentioning
confidence: 99%
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“…28 Nowadays, the layers of nanotubes biologically embedded in the metal surface by the anodization process are studied for surface modifications because of their chemical stability and structural properties. 25,36 The nanotubes of the TiO 2 layer modify the roughness of the surface and increase the surface area. 6,27,37,38 SEM images (See Figure 1A) show the vertical nanotubes of TiO 2 monolayer self-ordered on the Ti-30Ta alloy surface.…”
Section: Resultsmentioning
confidence: 99%
“…The layer of nanotubes has a different level of length due to alloy composition. 25,[39][40][41] The diameter of the nanotubes ranges between 80 and 100 nm. 42 According to Gongadze and Iglič, the diameter of nanotubes can have consequences on the biological response.…”
Section: Resultsmentioning
confidence: 99%
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“…The graph of the zeta potential (Figure 4) shows the variation of the zeta potential of paracetamol and the catalyst, with the pH of the medium. The curves intersect at pH 6.5; a value at which the paracetamol molecule is not ionized and the surface charge of TiO 2 is close to zero [41].…”
Section: Efficiency Of Paracetamol Photodegradation (%)mentioning
confidence: 94%