The use of magnetic nanoparticles (MNPs) is a promising technique for future advances in biomedical applications. This idea is supported by the availability of MNPs that can target specific cell components, the variety of shapes of MNPs and the possibility of finely controlling the applied magnetic forces. To examine this opportunity, here we review the current developments in the use of MNPs to mechanically stimulate cells and, specifically, the cell mechanotransduction systems. We analyze the cell components that may act as mechanosensors and their effect on cell fate and we focus on the promising possibilities of controlling stem-cell differentiation, inducing cancer-cell death and treating nervous-system diseases
The study and application ofmechanical forces to the cells ofthe body, has been proposed as a means ...
The current limitations of regenerative medicine strategies may be overcome through the use of magn...
Wnt signalling pathways play crucial roles in developmental biology, stem cell fate and tissue patte...
The use of magnetic nanoparticles (MNPs) is a promising technique for future advances in biomedical ...
Magnetic nanoparticles are promising new tools for therapeutic applications, such as magnetic nanopa...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
Cells can sense physical cues in the surrounding microenvironment and react by changing their functi...
Cellular processes like membrane deformation, cell migration, and transport of organelles are sensit...
Cell migration plays an important role in numerous normal and pathological processes. The physical m...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Although magnetic nanoparticles (MNPs) have fueled the field of nanotechnology in the last few years...
Magnetic nanoparticles (MNP) are extremely versatile tools in bioengineering and medicine with diver...
Magnetic nanoparticles (MNPs) have various applications in biomedicine, including imaging, drug deli...
Although some progress has been made in the treatment of cancer, challenges remain. In recent years,...
Magnetic nanoparticles can be coated with specific ligands that enable them to bind to receptors on ...
The study and application ofmechanical forces to the cells ofthe body, has been proposed as a means ...
The current limitations of regenerative medicine strategies may be overcome through the use of magn...
Wnt signalling pathways play crucial roles in developmental biology, stem cell fate and tissue patte...
The use of magnetic nanoparticles (MNPs) is a promising technique for future advances in biomedical ...
Magnetic nanoparticles are promising new tools for therapeutic applications, such as magnetic nanopa...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
Cells can sense physical cues in the surrounding microenvironment and react by changing their functi...
Cellular processes like membrane deformation, cell migration, and transport of organelles are sensit...
Cell migration plays an important role in numerous normal and pathological processes. The physical m...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Although magnetic nanoparticles (MNPs) have fueled the field of nanotechnology in the last few years...
Magnetic nanoparticles (MNP) are extremely versatile tools in bioengineering and medicine with diver...
Magnetic nanoparticles (MNPs) have various applications in biomedicine, including imaging, drug deli...
Although some progress has been made in the treatment of cancer, challenges remain. In recent years,...
Magnetic nanoparticles can be coated with specific ligands that enable them to bind to receptors on ...
The study and application ofmechanical forces to the cells ofthe body, has been proposed as a means ...
The current limitations of regenerative medicine strategies may be overcome through the use of magn...
Wnt signalling pathways play crucial roles in developmental biology, stem cell fate and tissue patte...