Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from the scientific community as mimetics of the extracellular matrix that can offer three-dimensional support for cell growth or become vehicles for the delivery of stem cells or drugs. These scaffolds have also been proposed as bone substitutes for small defects as they promote beneficial effects on human osteoblasts. In order to develop a novel bioactive titanium implant, we propose the introduction of a layer of ionic-complementary self-assembling peptides (EAbuK) on Ti whose surface has been previously sandblasted and acid etched. The peptide layer is anchored to the metal by covalent functionalization of titania with self-assembling sequences...
Titanium implants are nowadays often used in orthopedics and dentistry to repair or replace bone inj...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
A wide range of biochemical signals promoting cell functions ( adhesion, migration, proliferation, a...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Bioactive molecules have been proposed to promote beneficial interactions at bone-implant interfaces...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Mechanical properties and biological inertness of titanium provide potential in orthopedic and denta...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
A fundamental goal in the field of implantology is the design of innovative devices suitable foil pr...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
Bioactive molecules have been proposed to promote beneficialinteractions at bone-implant interfaces ...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
Titanium implants are nowadays often used in orthopedics and dentistry to repair or replace bone inj...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
A wide range of biochemical signals promoting cell functions ( adhesion, migration, proliferation, a...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Bioactive molecules have been proposed to promote beneficial interactions at bone-implant interfaces...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Mechanical properties and biological inertness of titanium provide potential in orthopedic and denta...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
A fundamental goal in the field of implantology is the design of innovative devices suitable foil pr...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
Bioactive molecules have been proposed to promote beneficialinteractions at bone-implant interfaces ...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
Titanium implants are nowadays often used in orthopedics and dentistry to repair or replace bone inj...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
A wide range of biochemical signals promoting cell functions ( adhesion, migration, proliferation, a...