The development of 3D printing technologies has allowed us to fabricate complex novel scaffolds for bone regeneration. In this study, we reported the incorporation of different concentrations of calcium silicate (CS) powder into fish gelatin methacrylate (FGelMa) for the fabrication of CS/FGelMa auxetic bio-scaffolds using 3D printing technology. Our results showed that CS could be successfully incorporated into FGelMa without influencing the original structural components of FGelMa. Furthermore, it conveyed that CS modifications both the mechanical properties and degradation rates of the scaffolds were improved in accordance with the concentrations of CS upon modifications of CS. In addition, the presence of CS enhanced the adhesion and pr...
[[abstract]]Currently, clinically available orthopedic implants are extremely biocompatible but they...
Current approaches to treat bone fractures typically use: i) autologous bone graft harvested from th...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Tooth loss or damage is a common problem affecting millions of people worldwide, and it results in s...
Worldwide, the number of bone fractures due to traumatic and accidental injuries is increasing expon...
With an aging population and an increase in the proportions of that population with access to high q...
Hydrogels have been widely applied to the fabrication of tissue engineering scaffolds via three-dime...
Hydrogels have been widely applied to the fabrication of tissue engineering scaffolds via three-dime...
Periodontal tissue regeneration is an important application area of biomaterials, given the large pr...
Calcium silicate (CS) is a suitable substrate for bone tissue engineering because it can provide bio...
Copyright © 2014 Dong Joon Lee et al.This is an open access article distributed under the Creative C...
Currently, clinically available orthopedic implants are extremely biocompatible but they lack specif...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
[[abstract]]Graphene-contained calcium silicate (CS)/polycaprolactone (PCL) scaffold (GCP) provides ...
Congenital abnormalities, trauma, and disease result in significant demands for bone replacement in ...
[[abstract]]Currently, clinically available orthopedic implants are extremely biocompatible but they...
Current approaches to treat bone fractures typically use: i) autologous bone graft harvested from th...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Tooth loss or damage is a common problem affecting millions of people worldwide, and it results in s...
Worldwide, the number of bone fractures due to traumatic and accidental injuries is increasing expon...
With an aging population and an increase in the proportions of that population with access to high q...
Hydrogels have been widely applied to the fabrication of tissue engineering scaffolds via three-dime...
Hydrogels have been widely applied to the fabrication of tissue engineering scaffolds via three-dime...
Periodontal tissue regeneration is an important application area of biomaterials, given the large pr...
Calcium silicate (CS) is a suitable substrate for bone tissue engineering because it can provide bio...
Copyright © 2014 Dong Joon Lee et al.This is an open access article distributed under the Creative C...
Currently, clinically available orthopedic implants are extremely biocompatible but they lack specif...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
[[abstract]]Graphene-contained calcium silicate (CS)/polycaprolactone (PCL) scaffold (GCP) provides ...
Congenital abnormalities, trauma, and disease result in significant demands for bone replacement in ...
[[abstract]]Currently, clinically available orthopedic implants are extremely biocompatible but they...
Current approaches to treat bone fractures typically use: i) autologous bone graft harvested from th...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...