The aim of this study was to exploit silk fibroin’s properties to develop innovative composite microcarriers for mesenchymal stem cell (MSCs) adhesion and proliferation. Alginate microcarriers were prepared, added to silk fibroin solution, and then treated with ethanol to induce silk conformational transition. Microcarriers were characterized for size distribution, coating stability and homogeneity. Finally, in vitro cytocompatibility and suitability as delivery systems for MSCs were investigated. Results indicated that our manufacturing process is consistent and reproducible: silk/alginate microcarriers were stable, with spherical geometry, about 400 μm in average diameter, and fibroin homogeneously coated the surface. MSCs were able to ad...
Silk fibroin scaffolds were studied as a new biomaterial option for tissue-engineered cartilage-like...
Mesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of solid organs due to t...
Cell interaction with biomaterials is one of the keystones to developing medical devices for tissue ...
The aim of this study was to exploit silk fibroin’s properties to develop innovative composite micro...
The aim of this study was to exploit silk fibroin's properties to develop innovative composite micro...
In this methodological paper, lyophilized fibroin-coated alginate microcarriers (LFAMs) proposed as ...
Abstract: In this methodological paper, lyophilized fibroin-coated alginate microcarriers (LFAMs) pr...
Mesenchymal stem cells (MSCs) are potential therapeutic candidates, owing to their differential abil...
Mesenchymal stem cells (MSCs) are potential therapeutic candidates, owing to their ability to differ...
The development of effective and versatile microcarriers is a pressing issue in tissue engineering a...
Sodium alginate (SA)-based hydrogels are often employed as bioink for three-dimensional (3D) scaffol...
International audienceMesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of...
Hydrogels are good candidate materials for cell delivery scaffolds because they can mimic the physic...
Micro-carriers, thanks to high surface/volume ratio, are widely studied as mesenchymal stem cell (MS...
The unique potential of the mesenchymal stem cells (MSCs) to modulate immune responses prompts their...
Silk fibroin scaffolds were studied as a new biomaterial option for tissue-engineered cartilage-like...
Mesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of solid organs due to t...
Cell interaction with biomaterials is one of the keystones to developing medical devices for tissue ...
The aim of this study was to exploit silk fibroin’s properties to develop innovative composite micro...
The aim of this study was to exploit silk fibroin's properties to develop innovative composite micro...
In this methodological paper, lyophilized fibroin-coated alginate microcarriers (LFAMs) proposed as ...
Abstract: In this methodological paper, lyophilized fibroin-coated alginate microcarriers (LFAMs) pr...
Mesenchymal stem cells (MSCs) are potential therapeutic candidates, owing to their differential abil...
Mesenchymal stem cells (MSCs) are potential therapeutic candidates, owing to their ability to differ...
The development of effective and versatile microcarriers is a pressing issue in tissue engineering a...
Sodium alginate (SA)-based hydrogels are often employed as bioink for three-dimensional (3D) scaffol...
International audienceMesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of...
Hydrogels are good candidate materials for cell delivery scaffolds because they can mimic the physic...
Micro-carriers, thanks to high surface/volume ratio, are widely studied as mesenchymal stem cell (MS...
The unique potential of the mesenchymal stem cells (MSCs) to modulate immune responses prompts their...
Silk fibroin scaffolds were studied as a new biomaterial option for tissue-engineered cartilage-like...
Mesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of solid organs due to t...
Cell interaction with biomaterials is one of the keystones to developing medical devices for tissue ...