AbstractSynaptic vesicles are specialized secretory organelles which are involved in the fast, point-to-point signaling typical of synapses. They store and secrete non-peptide neurotransmitters and are continuously regenerated in nerve terminals by exoendocytotic recycling. This recycling represents a highly specialized form of the recycling pathway which occurs at the surface of all cells. Several unique properties make synaptic vesicles a powerful experimental model for studies of vesicular traffic. These unique properties include their abundance in brain, the high specialization of nerve terminals for synaptic vesicle recycling, the possibility of studying their exocytosis at the level of single events by electrophysiology and the availa...
In contrast to temporal coding by synaptically acting neurotransmitters such as glutamate, neuromodu...
To maintain transmitter release during intense stimulation, neurons need to efficiently recycle vesi...
Neurotransmission in complex animals depends on a choir of functionally distinct synapses releasing ...
AbstractSynaptic vesicles are specialized secretory organelles which are involved in the fast, point...
Synaptic vesicle recycling is one of the best-studied cellular pathways. Many of the proteins involv...
The function of the nervous system depends on the exocytotic release of neurotransmitter from synapt...
AbstractThe kinetics of different steps in synaptic-vesicle recycling, including exocytosis, interna...
The function of the nervous system depends on the exocytotic release of neurotransmitter from synapt...
Neurotransmitter release takes place by the exocytosis of loaded synaptic vesicles. The vesicles the...
SummarySynaptic vesicle recycling is essential for maintaining efficient synaptic transmission. Deta...
Synaptic neurotransmission depends on the action of highly specialized small secretory organelles – ...
During the last few decades synaptic vesicles have been assigned to a variety of functional and morp...
Under the condition of microelectrode recording and fluorescence microscopy with dye FM 1-43 the res...
AbstractAfter neurotransmission, neurons internalize and recycle the membrane components of synaptic...
AbstractThe kinetics of different steps in synaptic-vesicle recycling, including exocytosis, interna...
In contrast to temporal coding by synaptically acting neurotransmitters such as glutamate, neuromodu...
To maintain transmitter release during intense stimulation, neurons need to efficiently recycle vesi...
Neurotransmission in complex animals depends on a choir of functionally distinct synapses releasing ...
AbstractSynaptic vesicles are specialized secretory organelles which are involved in the fast, point...
Synaptic vesicle recycling is one of the best-studied cellular pathways. Many of the proteins involv...
The function of the nervous system depends on the exocytotic release of neurotransmitter from synapt...
AbstractThe kinetics of different steps in synaptic-vesicle recycling, including exocytosis, interna...
The function of the nervous system depends on the exocytotic release of neurotransmitter from synapt...
Neurotransmitter release takes place by the exocytosis of loaded synaptic vesicles. The vesicles the...
SummarySynaptic vesicle recycling is essential for maintaining efficient synaptic transmission. Deta...
Synaptic neurotransmission depends on the action of highly specialized small secretory organelles – ...
During the last few decades synaptic vesicles have been assigned to a variety of functional and morp...
Under the condition of microelectrode recording and fluorescence microscopy with dye FM 1-43 the res...
AbstractAfter neurotransmission, neurons internalize and recycle the membrane components of synaptic...
AbstractThe kinetics of different steps in synaptic-vesicle recycling, including exocytosis, interna...
In contrast to temporal coding by synaptically acting neurotransmitters such as glutamate, neuromodu...
To maintain transmitter release during intense stimulation, neurons need to efficiently recycle vesi...
Neurotransmission in complex animals depends on a choir of functionally distinct synapses releasing ...