Silica nanoparticles (SiNPs) have been utilized to construct bioactive nanostructures comprising surface topographic features and bioactivity that enhances the activity of bone cells onto titanium‐based implants. However, there have been no previous attempts to create microrough surfaces based on SiNP nanostructures even though microroughness is established as a characteristic that provides beneficial effects in improving the biomechanical interlocking of titanium implants. Herein, a protein‐based SiNP coating is proposed as an osteopromotive surface functionalization approach to create microroughness on titanium implant surfaces. A bioengineered recombinant mussel adhesive protein fused with a silica‐precipitating R5 peptide (R5‐MAP) enabl...
Osteoporosis greatly impairs in vivo implant osseointegration because of poor osteogenesis in osteop...
SummaryBiomimetic design and substrate-based surface modification of medical implants will help to i...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...
Artículo de publicación ISINanostructured porous silica coatings were synthesized on titanium by th...
Successful titanium implantation strongly depends on early fixation through an osseointegration betw...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
Artículo de publicación ISIThe fabrication of a nanoporous silica coating loaded with bioactive glas...
Mechanical properties and biological inertness of titanium provide potential in orthopedic and denta...
Commercially pure titanium (cp Ti) dental implants have been widely and successfully used with high ...
One of the major limitations during titanium (Ti) implant osseointegration is the poor cellular inte...
Bones can suffer from damages due to ageing or traumatisms like fractures. When they are too damaged...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
This review paper describes several recent modification methods for biocompatible titanium dental im...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
A multitude of micro- and nano-surface structures have been developed to improve the clinical perfor...
Osteoporosis greatly impairs in vivo implant osseointegration because of poor osteogenesis in osteop...
SummaryBiomimetic design and substrate-based surface modification of medical implants will help to i...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...
Artículo de publicación ISINanostructured porous silica coatings were synthesized on titanium by th...
Successful titanium implantation strongly depends on early fixation through an osseointegration betw...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
Artículo de publicación ISIThe fabrication of a nanoporous silica coating loaded with bioactive glas...
Mechanical properties and biological inertness of titanium provide potential in orthopedic and denta...
Commercially pure titanium (cp Ti) dental implants have been widely and successfully used with high ...
One of the major limitations during titanium (Ti) implant osseointegration is the poor cellular inte...
Bones can suffer from damages due to ageing or traumatisms like fractures. When they are too damaged...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
This review paper describes several recent modification methods for biocompatible titanium dental im...
Hydrogels from self-assembling ionic complementary peptides have been receiving much interest from t...
A multitude of micro- and nano-surface structures have been developed to improve the clinical perfor...
Osteoporosis greatly impairs in vivo implant osseointegration because of poor osteogenesis in osteop...
SummaryBiomimetic design and substrate-based surface modification of medical implants will help to i...
To be better used as medical implants in orthopedic and dental clinical applications, titanium and t...