<p>a) Carbon protected metal nanomagnets (transmission electron microscopy image) were covalently linked into a hydrogel (b, cryo-section) with high porosity (pore size ~ 10 µm) to facilitate cell attachment. c) Magnetic, soft, cell culture scaffold. The dog-bone shape minimizes the required magnetic force for soft deformation. d) Good adherence of human mesenchymal stem cells seeded on hydrogel surfaces (Calcein-AM staining).</p
Jana Danková,1,2 Matej Buzgo,1,3,4 Jana Vejpravová,5 Simona Kubíčková,5 ...
Magnetic scaffolds gained much popularity for tissue repair in the recent years. Here we focus on ma...
Mesenchymal stem cells (MSCs) are widely used in cell therapy due to their convenience, multiline di...
We report the magnetically-facilitated scaffold-free assembly of lung tissue mimicking two-layered m...
Dynamic cell‐culture materials that can change mechanical properties in response to extrinsic stimul...
Hydrogels possess high water content and closely mimic the microenvironment of extracellular matrix....
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
The magnetization of mesenchymal stem cells (MSC) has the potential to aid tissue engineering approa...
The goal of this project is to develop a vehicle for a therapy treatment that increases stem cell-me...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
Stem cells have become increasingly important in the biomedical field because they have the potentia...
Current stem cell research often relies on the use of growth factors to stimulate cell proliferation...
The functionality of stem cells is tightly regulated by cues from the niche, comprising both intrins...
Mesenchymal stem cell behavior can be regulated through mechanical signaling, either by dynamic load...
Bone marrow and Adipose tissue are now recognized as an important source of postnatal mesenchymal st...
Jana Danková,1,2 Matej Buzgo,1,3,4 Jana Vejpravová,5 Simona Kubíčková,5 ...
Magnetic scaffolds gained much popularity for tissue repair in the recent years. Here we focus on ma...
Mesenchymal stem cells (MSCs) are widely used in cell therapy due to their convenience, multiline di...
We report the magnetically-facilitated scaffold-free assembly of lung tissue mimicking two-layered m...
Dynamic cell‐culture materials that can change mechanical properties in response to extrinsic stimul...
Hydrogels possess high water content and closely mimic the microenvironment of extracellular matrix....
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
The magnetization of mesenchymal stem cells (MSC) has the potential to aid tissue engineering approa...
The goal of this project is to develop a vehicle for a therapy treatment that increases stem cell-me...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
Stem cells have become increasingly important in the biomedical field because they have the potentia...
Current stem cell research often relies on the use of growth factors to stimulate cell proliferation...
The functionality of stem cells is tightly regulated by cues from the niche, comprising both intrins...
Mesenchymal stem cell behavior can be regulated through mechanical signaling, either by dynamic load...
Bone marrow and Adipose tissue are now recognized as an important source of postnatal mesenchymal st...
Jana Danková,1,2 Matej Buzgo,1,3,4 Jana Vejpravová,5 Simona Kubíčková,5 ...
Magnetic scaffolds gained much popularity for tissue repair in the recent years. Here we focus on ma...
Mesenchymal stem cells (MSCs) are widely used in cell therapy due to their convenience, multiline di...