Human adipose-derived stem/stromal cells (hASCs) have been popularly studied as cell-based therapy in the field of regenerative medicine due to their ability to differentiate into several cell types. In this study, in order to improve the mechanical strength and bioactivity of scaffolds for bone tissue engineering, three types of mesoporous bioactive glasses with different shapes and compositions were dispersed in the silk fibroin/chitosan (SF/CS)-based scaffolds, which were fabricated with a combination of freezing and lyophilization. The characteristic and physical properties of these composite scaffolds were evaluated. The biocompatibility was also assessed through hASCs in vitro tests. Both Alamar Blue (R) and Live/Dead assay (R) reveal...
In the current study, a bioactive glass (BG) powder was prepared by sol-gel technique in the system ...
This study reports on the processing of three-dimensional (3D) chitosan/bioactive glass composite sc...
Stem cells are the central element of regenerative medicine (RM). However, in many clinical applicat...
Objective: The three-dimensional biodegradable scaffolds could play an important role in terms of ti...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
In this work, the biological properties of three-dimensional scaffolds based on a blend of nanohydro...
In the past 20 years, mesoporous materials have been attracted great attention due to their signific...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Silk-based scaffolds have been introduced to bone tissue regeneration for years, however, their loca...
International audienceThis study reports the in vitro biocompatibility of a composite biomaterial co...
Silk fibroin protein is biodegradable and biocompatible, exhibiting excellent mechanical properties ...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Porous mesopore-bioglass (MBG) scaffolds have been proposed as a new class of bone regeneration mate...
In the current study, a bioactive glass (BG) powder was prepared by sol-gel technique in the system ...
This study reports on the processing of three-dimensional (3D) chitosan/bioactive glass composite sc...
Stem cells are the central element of regenerative medicine (RM). However, in many clinical applicat...
Objective: The three-dimensional biodegradable scaffolds could play an important role in terms of ti...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
In this work, the biological properties of three-dimensional scaffolds based on a blend of nanohydro...
In the past 20 years, mesoporous materials have been attracted great attention due to their signific...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Silk-based scaffolds have been introduced to bone tissue regeneration for years, however, their loca...
International audienceThis study reports the in vitro biocompatibility of a composite biomaterial co...
Silk fibroin protein is biodegradable and biocompatible, exhibiting excellent mechanical properties ...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Porous mesopore-bioglass (MBG) scaffolds have been proposed as a new class of bone regeneration mate...
In the current study, a bioactive glass (BG) powder was prepared by sol-gel technique in the system ...
This study reports on the processing of three-dimensional (3D) chitosan/bioactive glass composite sc...
Stem cells are the central element of regenerative medicine (RM). However, in many clinical applicat...