Item does not contain fulltextGelatin methacrylate (GelMA) is an inexpensive, photocrosslinkable, cell-responsive hydrogel which has drawn attention for a wide range of tissue engineering applications. The potential of GelMA scaffolds was demonstrated to be tunable for different tissue engineering (TE) applications through modifying the polymer concentration, methacrylation degree, or UV light intensity. Despite the promising results of GelMA hydrogels in tissue engineering, the influence of polymer concentration for bone tissue engineering (BTE) scaffolds was not established yet. Thus, in this study, we have demonstrated the effect of polymer concentration in GelMA scaffolds on osteogenic differentiation. We prepared GelMA scaffolds with 5...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Gelatin methacrylate (GelMA) is an inexpensive, photocrosslinkable, cell-responsive hydrogel which h...
Epigenetic approaches using the histone deacetylase 2 and 3 inhibitor-MI192 have been reported to ac...
Bone tissue engineering offers versatile solutions to broaden clinical options for treating skeletal...
Bone tissue engineering (BTE) has made significant progress in developing and assessing different ty...
Gelatin methacryloyl (GelMA) hydrogel is a photopolymerizable biomaterial widely used for three-dime...
Bone tissue engineering is a rapidly growing field which is currently progressing toward clinical ap...
For the fabrication of bone tissue equivalents via tissue engineering and bioprinting approaches, on...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
INTRODUCTION: In the present work, hydrogel/cryogel-polyester combinatory scaffolds for bone tissue ...
INTRODUCTION: In the present work, hydrogel/cryogel-polyester combinatory scaffolds for bone tissue ...
Human mesenchymal stem cells (hMSCs) have great potential in bone tissue engineering, and hydroxyapa...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Gelatin methacrylate (GelMA) is an inexpensive, photocrosslinkable, cell-responsive hydrogel which h...
Epigenetic approaches using the histone deacetylase 2 and 3 inhibitor-MI192 have been reported to ac...
Bone tissue engineering offers versatile solutions to broaden clinical options for treating skeletal...
Bone tissue engineering (BTE) has made significant progress in developing and assessing different ty...
Gelatin methacryloyl (GelMA) hydrogel is a photopolymerizable biomaterial widely used for three-dime...
Bone tissue engineering is a rapidly growing field which is currently progressing toward clinical ap...
For the fabrication of bone tissue equivalents via tissue engineering and bioprinting approaches, on...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
INTRODUCTION: In the present work, hydrogel/cryogel-polyester combinatory scaffolds for bone tissue ...
INTRODUCTION: In the present work, hydrogel/cryogel-polyester combinatory scaffolds for bone tissue ...
Human mesenchymal stem cells (hMSCs) have great potential in bone tissue engineering, and hydroxyapa...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...