A fundamental goal in the field of implantology is the design of innovative devices suitable foil promoting, implant-to-tissue integration. This result can be achieved by means of surface modifications aimed at optimizing tissue regeneration. In the framework of oral and orthopedic implantology, surface modifications concern both the optimization of titanium/titanium alloy surface roughness and the attachment of biochemical factors able to guide cellular adhesion and/or growth. This article focuses on the covalent attachment of two different adhesive peptides to rough titanium disks. The capability of biomimetic surfaces to increase osteoblast adhesion and the specificity of their biological activity due to the presence of cell adhesion sig...
It is well known that functionalization of surfaces with cell adhesive peptides mimicking the integr...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
The covalent attachment of an adhesive peptide, reproducing the 351-359 sequence of human vitronecti...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
Titanium implants are nowadays often used in orthopedics and dentistry to repair or replace bone inj...
Bioactive molecules have been proposed to promote beneficial interactions at bone-implant interfaces...
Bioactive molecules have been proposed to promote beneficialinteractions at bone-implant interfaces ...
Investigations on the relationships between the properties of biomaterial surfaces and cell adhesion...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
Covalent attachment of adhesive peptides to biomaterials surfaces can result in the formation of a b...
Covalent attachment of adhesive peptides to biomaterials surfaces can result in the formation of a b...
This study aims to improve the osseointegration of titanium implants through surface immobilization ...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
The covalent attachment of an adhesive peptide, reproducing the 351\u2013359 sequence of human vitro...
It is well known that functionalization of surfaces with cell adhesive peptides mimicking the integr...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
The covalent attachment of an adhesive peptide, reproducing the 351-359 sequence of human vitronecti...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
A fundamental goal in the field of implantology is the design of innovative devices suitable for pro...
Titanium implants are nowadays often used in orthopedics and dentistry to repair or replace bone inj...
Bioactive molecules have been proposed to promote beneficial interactions at bone-implant interfaces...
Bioactive molecules have been proposed to promote beneficialinteractions at bone-implant interfaces ...
Investigations on the relationships between the properties of biomaterial surfaces and cell adhesion...
Biomaterials to be used for the production of endosseous devices in dental, orthopedic and maxillo-f...
Covalent attachment of adhesive peptides to biomaterials surfaces can result in the formation of a b...
Covalent attachment of adhesive peptides to biomaterials surfaces can result in the formation of a b...
This study aims to improve the osseointegration of titanium implants through surface immobilization ...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
The covalent attachment of an adhesive peptide, reproducing the 351\u2013359 sequence of human vitro...
It is well known that functionalization of surfaces with cell adhesive peptides mimicking the integr...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
The covalent attachment of an adhesive peptide, reproducing the 351-359 sequence of human vitronecti...