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Impact of Chemical Heterogeneities of Surfaces on Colonization by Bacteria
High-performance liquid chromatography as a technique to determine protein adsorption onto hydrophilic/hydrophobic surfaces
XPS as a tool to evaluate organization of aminosilane layers and its impact on bioadhesion
Dopamine-Melanin Film Deposition Depends on the Used Oxidant and Buffer Solution
Study of interaction between protein and surface. Influence of hydrodynamics and physical operating conditions
Filtration of protein-based solutions with ceramic ultrafiltration membrane. Study of selectivity, adsorption, and protein denaturation
Impact of the structural organization of aminosilane layers on bacterial adhesion
Filtration of protein-based solutions with ceramic ultrafiltration membrane. Study of selectivity, adsorption, and protein denaturation
New strategies for immobilization of vegetal adhesion protein
Ultrafiltration of protein based solution. Study of membrane fouling
Surface composition XPS analysis of a plasma treated polystyrene: Evolution over long storage periods
New strategies of fibronectin grafting onto polystyrene supports
Bacteria/Material Interfaces: Role of the Material and Cell Wall Properties
Self-Assembled Molecular Platforms for Bacteria/Material Biointerface Studies: Importance to Control Functional Group Accessibility
Protein/Material Interfaces: Investigation on Model Surfaces
Cell/Material Interfaces: Influence of Surface Chemistry and Surface Topography on Cell Adhesion
Statistical approach of chemistry and topography effect on human osteoblast adhesion
Relative influence of surface topography and surface chemistry on cell response to bone implant materials. Part 2: Biological aspects
Relative influence of surface topography and surface chemistry on cell response to bone implant materials. Part 1: Physico-chemical effects

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