Enhancing surface free energy and hydrophilicity through chemical modification of microstructured titanium implant surfaces
Top Cited Papers
- 3 November 2005
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research Part A
- Vol. 76A (2), 323-334
- https://doi.org/10.1002/jbm.a.30518
Abstract
Roughness-induced hydrophobicity, well-known from natural plant surfaces and intensively studied toward superhydrophobic surfaces, has currently been identified on microstructured titanium implant surfaces. Studies indicate that microstructuring by sandblasting and acid etching (SLA) enhances the osteogenic properties of titanium. The undesired initial hydrophobicity, however, presumably decelerates primary interactions with the aqueous biosystem. To improve the initial wettability and to retain SLA microstructure, a novel surface modification was tested. This modification differs from SLA by its preparation after acid etching, which was done under protective gas conditions following liquid instead of dry storage. We hypothesized that this modification should have increased wettability due to the prevention of contaminations that occurs during air contact. The main outcome of dynamic wettability measurements was that the novel modification shows increased surface free energy (SFE) and increased hydrophilicity with initial water contact angles of 0° compared to 139.9° for SLA. This hydrophilization was kept even after any drying. Reduced hydrocarbon contaminations were identified to play a possible role in altered surface thermodynamics. Such surfaces aim to retain the hydrophilicity and natural high surface energy of the Ti dioxide surface until surgical implants' insertion and are compared in this in vitro study with structural surface variants of titanium to compare roughness and chemically induced wettability. © 2005 Wiley Periodicals, Inc. J Biomed Mater Res, 2006Keywords
This publication has 40 references indexed in Scilit:
- High surface energy enhances cell response to titanium substrate microstructureJournal of Biomedical Materials Research Part A, 2005
- Thrombin, kallikrein and complement C5b-9 adsorption on hydrophilic and hydrophobic titanium and glass after short time exposure to whole bloodBiomaterials, 2003
- Wetting on Hydrophobic Rough Surfaces: To Be Heterogeneous or Not To Be?Langmuir, 2003
- Transformation of a Simple Plastic into a Superhydrophobic SurfaceScience, 2003
- Evaluation of the Lifshitz-van der Waals/Acid-Base Approach To Determine Surface Tension ComponentsLangmuir, 1995
- Evaluation of the Lifshitz-van der Waals/Acid-Base Approach To Determine Interfacial TensionsLangmuir, 1994
- Hydration and preferential molecular adsorption on titanium in vitroBiomaterials, 1992
- Estimation of the surface free energy of polymersJournal of Applied Polymer Science, 1969
- Relation of the Equilibrium Contact Angle to Liquid and Solid ConstitutionPublished by American Chemical Society (ACS) ,1964
- Wettability of porous surfacesTransactions of the Faraday Society, 1944