2008
DOI: 10.1016/j.apsusc.2007.11.026
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S180 cell growth on low ion energy plasma treated TiO2 thin films

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Cited by 15 publications
(8 citation statements)
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“…Over the last decade, it has become evident that the structure, composition and distribution of focal adhesion components play central roles in the regulations of adhesive processes [1][2][3]. Also the effects of substrate material composition, surface chemistry and topography on cell adhesion and proliferation processes have been largely studied [4][5][6][7]. The cell migration process was observed at numerous studies [8][9][10][11].The biomechanics of cell mobility and thermodynamics of bio membranes were investigated and changes in adhesion, protrusion and contraction during cell migration process were reported [12,13].…”
Section: Introductionmentioning
confidence: 99%
“…Over the last decade, it has become evident that the structure, composition and distribution of focal adhesion components play central roles in the regulations of adhesive processes [1][2][3]. Also the effects of substrate material composition, surface chemistry and topography on cell adhesion and proliferation processes have been largely studied [4][5][6][7]. The cell migration process was observed at numerous studies [8][9][10][11].The biomechanics of cell mobility and thermodynamics of bio membranes were investigated and changes in adhesion, protrusion and contraction during cell migration process were reported [12,13].…”
Section: Introductionmentioning
confidence: 99%
“…Earlier, several methods such as supersonic beam depositions, 38 plasma spray or discharge techniques, nitric acid passivation 39 and nanoparticle based deposits [40][41][42][43][44][45] have been reported to coat TiO 2 on different types of substrates with the aim to evaluate the properties of normal and malignant cells in culture or in vivo stability of implants. Earlier, several methods such as supersonic beam depositions, 38 plasma spray or discharge techniques, nitric acid passivation 39 and nanoparticle based deposits [40][41][42][43][44][45] have been reported to coat TiO 2 on different types of substrates with the aim to evaluate the properties of normal and malignant cells in culture or in vivo stability of implants.…”
Section: Discussionmentioning
confidence: 99%
“…Methodologies for biomaterials surface modification for cell culture applications One of the important and unique features of this work is the simplicity and tunability of the method to reproducibly obtain biologically functional and chemically stable coatings of thin films on glass surfaces. Earlier, several methods such as supersonic beam depositions, 38 plasma spray or discharge techniques, nitric acid passivation 39 and nanoparticle based deposits [40][41][42][43][44][45] have been reported to coat TiO 2 on different types of substrates with the aim to evaluate the properties of normal and malignant cells in culture or in vivo stability of implants. Our method offers a distinct improvement over these methods because it yields nanoscale TiO 2 films that are very low in carbon content and exhibit high FIGURE 5.…”
Section: Discussionmentioning
confidence: 99%
“…A 1.0 × 1.0 cm 2 SUS316 substrate was used and placed at a rotating substrate holder during the FTO film deposition. Before the depositions, we cleaned the SUS316 surface with the H 2 /Ar plasma in order to increase the deposition efficiency between the FTO film and the surface of SUS316 and to tightly bond the FTO film with the BP surface [9,10]. This treatment lasted for 10 min prior to the deposition.…”
Section: Contents Lists Available At Sciencedirectmentioning
confidence: 99%
“…When the STS316 is incorporated for the BP materials, there is a significant influence for the PEMFC system, especially to carry out the strong hydroacid reactions. High interfacial contact and corrosion resistance are sustained because of the oxidation state on the STS316 surface [10]. With the coating on the STS316 surface, we can further control these properties.…”
Section: Introductionmentioning
confidence: 99%