Hydrogels represent an attractive material platform for realization of three-dimensional (3D) tissue-engineered constructs, as they have tunable mechanical properties, are compatible with different types of cells, and resemble elements found in natural extracellular matrices. So far, numerous hydrogel-cartilage/bone tissue engineering (TE)-related studies were performed by utilizing a single cell encapsulation approach. Although multicellular spheroid cultures exhibit advantageous properties for cartilage or bone TE, the chondrogenic or osteogenic differentiation potential of stem cell microspheroids within hydrogels has not been investigated much. This study explores, for the first time, how stiffness of gelatin-based hydrogels (having a s...
Differentiation of stem cells to chondrocytes in vitro usually results in a heterogeneous phenotype....
Gelatin–hyaluronic acid (Gel–HA) hybrid hydrogels have been proposed as matrices for tissue engineer...
This work investigated an injectable, biodegradable hydrogel composite of oligo(poly(ethylene glycol...
Adipose-derived mesenchymal stem cells (ASCs) represent a great promise for tissue regeneration as f...
The extracellular matrix is a highly complex microenvironment, whose various components converge to ...
Due to the weak regeneration potential of cartilage, there is a high clinical incidence of articular...
Keeping the stemness of human mesenchymal stem cells (hMSCs) and their adipocyte differentiation pot...
The microenvironment, which can be considered the sum of all the components and conditions surroundi...
Cell spheroids are three-dimensional cell aggregates that have been widely employed in tissue engine...
Objective : The cellular microenvironment plays an important role in controlling the cellular behavi...
There are a variety of exciting hydrogel technologies being explored for cartilage regenerative medi...
SummaryObjectiveEngineering cartilage requires that a clinically relevant cell type be situated with...
INTRODUCTION Adipose stem cells represent a reliable source of stem cells for their widely demonstra...
SummaryObjectiveThe objective of this study was to determine the capacity of chondrocyte- and mesenc...
[EN] Gelatin-hyaluronic acid (Gel-HA) hybrid hydrogels have been proposed as matrices for tissue eng...
Differentiation of stem cells to chondrocytes in vitro usually results in a heterogeneous phenotype....
Gelatin–hyaluronic acid (Gel–HA) hybrid hydrogels have been proposed as matrices for tissue engineer...
This work investigated an injectable, biodegradable hydrogel composite of oligo(poly(ethylene glycol...
Adipose-derived mesenchymal stem cells (ASCs) represent a great promise for tissue regeneration as f...
The extracellular matrix is a highly complex microenvironment, whose various components converge to ...
Due to the weak regeneration potential of cartilage, there is a high clinical incidence of articular...
Keeping the stemness of human mesenchymal stem cells (hMSCs) and their adipocyte differentiation pot...
The microenvironment, which can be considered the sum of all the components and conditions surroundi...
Cell spheroids are three-dimensional cell aggregates that have been widely employed in tissue engine...
Objective : The cellular microenvironment plays an important role in controlling the cellular behavi...
There are a variety of exciting hydrogel technologies being explored for cartilage regenerative medi...
SummaryObjectiveEngineering cartilage requires that a clinically relevant cell type be situated with...
INTRODUCTION Adipose stem cells represent a reliable source of stem cells for their widely demonstra...
SummaryObjectiveThe objective of this study was to determine the capacity of chondrocyte- and mesenc...
[EN] Gelatin-hyaluronic acid (Gel-HA) hybrid hydrogels have been proposed as matrices for tissue eng...
Differentiation of stem cells to chondrocytes in vitro usually results in a heterogeneous phenotype....
Gelatin–hyaluronic acid (Gel–HA) hybrid hydrogels have been proposed as matrices for tissue engineer...
This work investigated an injectable, biodegradable hydrogel composite of oligo(poly(ethylene glycol...