Sara Svensson,1,2 Magnus Forsberg,1,2 Mats Hulander,1,2 Forugh Vazirisani,1,2 Anders Palmquist,1,2 Jukka Lausmaa,2,3 Peter Thomsen,1,2 Margarita Trobos1,21Department of Biomaterials, Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden; 2BIOMATCELL VINN Excellence Center of Biomaterials and Cell Therapy, Gothenburg, Sweden; 3SP Technical Research Institute of Sweden, Borås, SwedenAbstract: The role of material surface properties in the direct interaction with bacteria and the indirect route via host defense cells is not fully understood. Recently, it was suggested that nanostructured implant surfaces possess antimicrobial properties. In the current study, the adhesion and biofilm formation of Staphylococcus epidermidis ...
Biofilms are complex aggregation of microorganisms grown on a solid substrate. They are characteri...
Medical devices with an effective anti-colonization surface are important tools for combatting healt...
The interaction between biology and non-viable surfaces is crucial for many organisms and cells. For...
Biomaterial-associated infections often arise from contaminating bacteria adhering to an implant sur...
Bacterial infection after surgeries is a serious problem that cannot be treated by traditional antib...
Bacterial adhesion to a biomaterial surface is thought to be the key step in the infection of indwel...
Investigating and understanding the response of microbes to various surfaces requires a versatile pa...
In recent years the progress in the field of nanotechnologies has offered new possibilities to contr...
Bacterial adhesion to a biomaterial surface is thought to be the key step in the infection of indwel...
Conventional metallic antibacterial materials release metal ions and reactive oxygen species (ROS) f...
Nanohydroxyapatite (nanoHA), due to its chemical properties, has appeared as an exceptionally promis...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
Bacterial biofilms on medical devices (MDs) can cause deadly infections due to their resistance to a...
The present study investigates the effect of a silver (Ag)-containing nanocomposite coating on Staph...
Biomaterial-associated-infection causes failure of biomaterial implants. Many new biomaterials have ...
Biofilms are complex aggregation of microorganisms grown on a solid substrate. They are characteri...
Medical devices with an effective anti-colonization surface are important tools for combatting healt...
The interaction between biology and non-viable surfaces is crucial for many organisms and cells. For...
Biomaterial-associated infections often arise from contaminating bacteria adhering to an implant sur...
Bacterial infection after surgeries is a serious problem that cannot be treated by traditional antib...
Bacterial adhesion to a biomaterial surface is thought to be the key step in the infection of indwel...
Investigating and understanding the response of microbes to various surfaces requires a versatile pa...
In recent years the progress in the field of nanotechnologies has offered new possibilities to contr...
Bacterial adhesion to a biomaterial surface is thought to be the key step in the infection of indwel...
Conventional metallic antibacterial materials release metal ions and reactive oxygen species (ROS) f...
Nanohydroxyapatite (nanoHA), due to its chemical properties, has appeared as an exceptionally promis...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
Bacterial biofilms on medical devices (MDs) can cause deadly infections due to their resistance to a...
The present study investigates the effect of a silver (Ag)-containing nanocomposite coating on Staph...
Biomaterial-associated-infection causes failure of biomaterial implants. Many new biomaterials have ...
Biofilms are complex aggregation of microorganisms grown on a solid substrate. They are characteri...
Medical devices with an effective anti-colonization surface are important tools for combatting healt...
The interaction between biology and non-viable surfaces is crucial for many organisms and cells. For...