AbstractDuring the growth of axons, the surface area of the neuron increases dramatically. Membrane addition as well as exchange could contribute to rapid membrane dynamics or flow. Using diffusing latex beads to monitor membrane flow, we find that axonal membrane flows rapidly (7 μm/min) from growth cone to cell body during axon growth and that flow is inhibited by brefeldin A. To power this flow, there is a membrane tension gradient from growth cone to cell body that could draw the membrane over the axon at that rate. Further, when an artificial flow is induced to the center of the axon by use of laser tweezers, the primary source of the membrane is from the growth cone. We suggest that during neuron growth, there is excess membrane added...
Axon branching is a critical process ensuring a high degree of interconnectivity for neural network ...
Membrane tethers are extracted at constant velocity from neuronal growth cones using a force generat...
Restricted Access.Mechanical properties of cell membranes are known to be significantly influenced b...
AbstractDuring the growth of axons, the surface area of the neuron increases dramatically. Membrane ...
AbstractExperiments with laser optical tweezers throw light on the old question of where membrane is...
Background: During nerve growth, cytoplasmic vesicles add new membrane preferentially to the growth ...
AbstractThe rapid transition of a stationary axon into a motile growth cone requires the recruitment...
International audienceMicrofluidic-based fluorescent exclusion method allows to tackle the issue of ...
BACKGROUND: Growth cones at the tips of growing axons move along predetermined pathways to establish...
Many cell phenomena involve major morphological changes, particularly in mitosis and the process of ...
Summary: The growth cone is an essential structure for nerve growth. Although its membrane and cytos...
BACKGROUND. Growth cones at the tips of growing axons move along predetermined pathways to establish...
AbstractBackground Growth cones at the tips of growing axons move along predetermined pathways to es...
Abstract: Integrity of the plasma membrane is essential for the maintenance of physiological condit...
Important information about the mechanisms of axon guidance in the developing and regenerating brain...
Axon branching is a critical process ensuring a high degree of interconnectivity for neural network ...
Membrane tethers are extracted at constant velocity from neuronal growth cones using a force generat...
Restricted Access.Mechanical properties of cell membranes are known to be significantly influenced b...
AbstractDuring the growth of axons, the surface area of the neuron increases dramatically. Membrane ...
AbstractExperiments with laser optical tweezers throw light on the old question of where membrane is...
Background: During nerve growth, cytoplasmic vesicles add new membrane preferentially to the growth ...
AbstractThe rapid transition of a stationary axon into a motile growth cone requires the recruitment...
International audienceMicrofluidic-based fluorescent exclusion method allows to tackle the issue of ...
BACKGROUND: Growth cones at the tips of growing axons move along predetermined pathways to establish...
Many cell phenomena involve major morphological changes, particularly in mitosis and the process of ...
Summary: The growth cone is an essential structure for nerve growth. Although its membrane and cytos...
BACKGROUND. Growth cones at the tips of growing axons move along predetermined pathways to establish...
AbstractBackground Growth cones at the tips of growing axons move along predetermined pathways to es...
Abstract: Integrity of the plasma membrane is essential for the maintenance of physiological condit...
Important information about the mechanisms of axon guidance in the developing and regenerating brain...
Axon branching is a critical process ensuring a high degree of interconnectivity for neural network ...
Membrane tethers are extracted at constant velocity from neuronal growth cones using a force generat...
Restricted Access.Mechanical properties of cell membranes are known to be significantly influenced b...