New strategies to promote neuronal regeneration should aim to increase the speed of axonal elongation. Biochemical signaling is a key factor in axon growth, but recent discoveries have shown that mechanical force, through a process referred to as stretch growth, can significantly influence the elongation rate. Here, we develop a method to apply forces to primary hippocampal neurons from mice using magnetic microposts that actuate in response to an external magnetic field. Neurons are cultured onto these microposts and subjected to an average displacement of 0.2 μm at a frequency of 5 Hz. We find that the mechanical stimulation promotes an increase in the length of the axons compared to control conditions. In addition, there is an increase i...
Neurons are mechanosensitive cells. The role of mechanical force in the process of neurite initiatio...
During development of the central nervous system (CNS), neurons polarize and rapidly extend their ax...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...
New strategies to promote neuronal regeneration should aim to increase the speed of axonal elongatio...
Axonal growth has attracted considerable interest in the last decades. Historically, axon outgrowth ...
Axonal growth is a phenomenon of great interest for the community of neuroscientists. However, the k...
Stretch-growth has been defined as a process that extends axons via the application of mechanical fo...
Although the exact mechanisms involved in the growth of axons is still incompletely understood, it i...
Mechanical stimulation modulates neural development and neuronal activity. In a previous study, magn...
Mechanical force is crucial in guiding axon outgrowth before and after synapse formation. This proce...
There is a growing body of evidence indicating the importance of physical stimuli for neuronal growt...
Magnetosomes are membrane-enclosed iron oxide crystals biosynthesized by magnetotactic bacteria. As ...
The complexity of the nervous system is one of the major obstacles for implementing effective strate...
Establishing extracellular milieus to stimulate neuronal regeneration is a critical need in neuronal...
doi:10.3791/2753 (2011). During pre-synaptic embryonic development, neuronal processes traverse shor...
Neurons are mechanosensitive cells. The role of mechanical force in the process of neurite initiatio...
During development of the central nervous system (CNS), neurons polarize and rapidly extend their ax...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...
New strategies to promote neuronal regeneration should aim to increase the speed of axonal elongatio...
Axonal growth has attracted considerable interest in the last decades. Historically, axon outgrowth ...
Axonal growth is a phenomenon of great interest for the community of neuroscientists. However, the k...
Stretch-growth has been defined as a process that extends axons via the application of mechanical fo...
Although the exact mechanisms involved in the growth of axons is still incompletely understood, it i...
Mechanical stimulation modulates neural development and neuronal activity. In a previous study, magn...
Mechanical force is crucial in guiding axon outgrowth before and after synapse formation. This proce...
There is a growing body of evidence indicating the importance of physical stimuli for neuronal growt...
Magnetosomes are membrane-enclosed iron oxide crystals biosynthesized by magnetotactic bacteria. As ...
The complexity of the nervous system is one of the major obstacles for implementing effective strate...
Establishing extracellular milieus to stimulate neuronal regeneration is a critical need in neuronal...
doi:10.3791/2753 (2011). During pre-synaptic embryonic development, neuronal processes traverse shor...
Neurons are mechanosensitive cells. The role of mechanical force in the process of neurite initiatio...
During development of the central nervous system (CNS), neurons polarize and rapidly extend their ax...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...