The present focus is on the synthesis of highly effective, porous, biocompatible, and inert scaffold by using ceramic nanoparticles and natural polymer for the application in tissue engineering. Freeze-drying method was used to fabricate nano-TiO2 doped chitosan sample scaffold. Nano-TiO2/chitosan scaffold can considered as an effective solution for damaged tissue regeneration. The interaction between chitosan (polysaccharide) and nano-TiO2 makes it highly porous and brittle that could be an effective substitute for bone tissue engineering. The TiO2 nanoparticles have a great surface area and inert properties while chitosan is highly biocompatible and antibacterial. The physiochemical properties of TiO2 nanoparticles and scaffold are evalua...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
Chitin and chitosan based nanocomposite scaffolds have been widely used for bone tissue engineering....
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
New technologies based on nanocomposites of biopolymers and nanoparticles inspired by the nature of ...
Herein, chitosan nanoparticles (CS-NPs) were prepared and functionalized chemically with titanium di...
Low mechanical strength and lack of osteoconductive cues are problems associated with chitosan-based...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
The majority of chitosan-based bone tissue engineering (BTE) scaffolds have the problem of poor mech...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
Chitin and chitosan based nanocomposite scaffolds have been widely used for bone tissue engineering....
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
New technologies based on nanocomposites of biopolymers and nanoparticles inspired by the nature of ...
Herein, chitosan nanoparticles (CS-NPs) were prepared and functionalized chemically with titanium di...
Low mechanical strength and lack of osteoconductive cues are problems associated with chitosan-based...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
The majority of chitosan-based bone tissue engineering (BTE) scaffolds have the problem of poor mech...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...