The objective of this study was to evaluate the potential benefit of 3D composite scaffolds composed of chitosan and calcium phosphate for bone tissue engineering. Additionally, incorporation of mechanically weak lyophilized microspheres within those air-dried (AD) was considered for enhanced bioactivity. AD microsphere, alone, and air- and freeze-dried microsphere (FDAD) 3D scaffolds were evaluated in vitro using a 28-day osteogenic culture model with the Saos-2 cell line. Mechanical testing, quantitative microscopy, and lysozyme-driven enzymatic degradation of the scaffolds were also studied. FDAD scaffold showed a higher concentration (p \u3c 0.01) in cells per scaffold mass vs. AD constructs. Collagen was ∼31% greater (p \u3c 0.01) on F...
[Excerpt] The present study reports the use of non-porous, ‘‘smart’’ and stimulus responsive chitosa...
Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue r...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
The orthopedic clinical demand for bone grafts is a persistent problem for patients with age-related...
Composite chitosan-nano-hydroxyapatite microspheres and scaffolds prepared using a co-precipitation ...
To meet the challenge of regenerating bone lost to disease or trauma, biodegradable scaffolds are be...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Dicalcium Phosphate Dihydrate (DCPD) mineral scaffolds alone do not possess the mechanical flexibili...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Three-dimensional macroporous scaffolds are commonly used in bone tissue engineering applications si...
Current scaffolding systems in tissue engineering not only aim to serve as a three-dimensional (3-D)...
The present study delineates a relatively simpler approach for fabrication of a macroporous three-di...
This work proposes the use of nonporous, smart, and stimulus responsive chitosan-based scaffolds for...
In this study, a new scaffold fabrication method based on the combination of a series of stabilizati...
Insufficient fracture healing affects hundreds of thousands of people every year in the United State...
[Excerpt] The present study reports the use of non-porous, ‘‘smart’’ and stimulus responsive chitosa...
Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue r...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
The orthopedic clinical demand for bone grafts is a persistent problem for patients with age-related...
Composite chitosan-nano-hydroxyapatite microspheres and scaffolds prepared using a co-precipitation ...
To meet the challenge of regenerating bone lost to disease or trauma, biodegradable scaffolds are be...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Dicalcium Phosphate Dihydrate (DCPD) mineral scaffolds alone do not possess the mechanical flexibili...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Three-dimensional macroporous scaffolds are commonly used in bone tissue engineering applications si...
Current scaffolding systems in tissue engineering not only aim to serve as a three-dimensional (3-D)...
The present study delineates a relatively simpler approach for fabrication of a macroporous three-di...
This work proposes the use of nonporous, smart, and stimulus responsive chitosan-based scaffolds for...
In this study, a new scaffold fabrication method based on the combination of a series of stabilizati...
Insufficient fracture healing affects hundreds of thousands of people every year in the United State...
[Excerpt] The present study reports the use of non-porous, ‘‘smart’’ and stimulus responsive chitosa...
Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue r...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...