Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brain architectures in vitro due to their biocompatibility, biodegradability, and wide range of tunable mechanical properties. To better comprehend in vitro human brain models and the mechanotransduction processes, we generated a 3D hydrogel model by casting photo-polymerized gelatin methacryloyl (GelMA) in comparison to poly (ethylene glycol) diacrylate (PEGDA) atop of SH-SY5Y neuroblastoma cells seeded with 150,000 cells/cm2 according to our previous experience in a microliter-sized polydimethylsiloxane (PDMS) ring serving for confinement. 3D SH-SY5Y neuroblastoma cells in GelMA demonstrated an elongated, branched, and spreading morphology rese...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
We report an injectable hydrogel scaffold system with tunable stiffness for controlling the prolifer...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
IntroductionMany different methods of patterning hydrogels are currently investigated for their adva...
IntroductionMany different methods of patterning hydrogels are currently investigated for their adva...
Introduction Many different methods of patterning hydrogels are currently investigated for their adv...
\u3cp\u3eIn order to better understand the brain and brain diseases, in vitro human brain models nee...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
As the human population is getting older, neurodegenerative diseases are becoming an increasing thre...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
We report an injectable hydrogel scaffold system with tunable stiffness for controlling the prolifer...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
Over the past decade, hydrogels have shown great potential for mimicking three-dimensional (3D) brai...
IntroductionMany different methods of patterning hydrogels are currently investigated for their adva...
IntroductionMany different methods of patterning hydrogels are currently investigated for their adva...
Introduction Many different methods of patterning hydrogels are currently investigated for their adv...
\u3cp\u3eIn order to better understand the brain and brain diseases, in vitro human brain models nee...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
As the human population is getting older, neurodegenerative diseases are becoming an increasing thre...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
We report an injectable hydrogel scaffold system with tunable stiffness for controlling the prolifer...
We present a simple and easy to handle PDMS microfluidic device for neuronal cell culture studies in...