The effects of adenosine on neurotransmission have been widely studied by monitoring transmitter release. However, the effects of adenosine on vesicle recycling are still unknown. We used fluorescence microscopy of FM2-10-labeled synaptic vesicles in combination with intracellular recordings to examine whether adenosine regulates vesicle recycling during high-frequency stimulation at mouse neuromuscular junctions. The A1 adenosine receptor antagonist (8-cyclopentyl-1,3-dipropylxanthine) increased the quantal content released during the first endplate potential, suggesting that vesicle exocytosis can be restricted by endogenous adenosine, which accordingly decreases the size of the recycling vesicle pool. Staining protocols designed to label...
We investigated the effect of adenosine A1 receptors on the release of acetylcholine (ACh) and GABA,...
El proceso de reciclado de las vesículas sinápticas es una característica integral de la función pre...
Ecto-nucleotidases play a pivotal role in terminating the signalling via ATP and in producing adenos...
Neural circuit activity increases the release of the purine neuromodulator adenosine into the extrac...
Adenosine is a powerful modulator of skeletal neuromuscular transmission, operating via inhibitory o...
Adenosine is a prototypical neuromodulator, which mainly controls excitatory transmission through th...
© 2018 IBRO Adenosine is a powerful modulator of skeletal neuromuscular transmission, operating via ...
Adenosine is perhaps the most important and universal modulator in the brain. The current consensus ...
Purinergic signaling is a highly complex system of extracellular communication involved in many phys...
The purine adenosine is a potent neuromodulator in the brain, with roles in a number of diverse phy...
Bursts of action potentials (APs) are crucial for the release of neurotransmitters from dense core g...
In the brain, extracellular adenosine increases as a result of neuronal activity. The mechanisms by ...
The modulation of synaptic transmission by presynaptic ionotropic and metabotropic receptors is an i...
In the brain, extracellular adenosine increases as a result of neuronal activity. The mechanisms by ...
The authors are grateful for support from the Wellcome Trust.Neuromodulation allows neural networks ...
We investigated the effect of adenosine A1 receptors on the release of acetylcholine (ACh) and GABA,...
El proceso de reciclado de las vesículas sinápticas es una característica integral de la función pre...
Ecto-nucleotidases play a pivotal role in terminating the signalling via ATP and in producing adenos...
Neural circuit activity increases the release of the purine neuromodulator adenosine into the extrac...
Adenosine is a powerful modulator of skeletal neuromuscular transmission, operating via inhibitory o...
Adenosine is a prototypical neuromodulator, which mainly controls excitatory transmission through th...
© 2018 IBRO Adenosine is a powerful modulator of skeletal neuromuscular transmission, operating via ...
Adenosine is perhaps the most important and universal modulator in the brain. The current consensus ...
Purinergic signaling is a highly complex system of extracellular communication involved in many phys...
The purine adenosine is a potent neuromodulator in the brain, with roles in a number of diverse phy...
Bursts of action potentials (APs) are crucial for the release of neurotransmitters from dense core g...
In the brain, extracellular adenosine increases as a result of neuronal activity. The mechanisms by ...
The modulation of synaptic transmission by presynaptic ionotropic and metabotropic receptors is an i...
In the brain, extracellular adenosine increases as a result of neuronal activity. The mechanisms by ...
The authors are grateful for support from the Wellcome Trust.Neuromodulation allows neural networks ...
We investigated the effect of adenosine A1 receptors on the release of acetylcholine (ACh) and GABA,...
El proceso de reciclado de las vesículas sinápticas es una característica integral de la función pre...
Ecto-nucleotidases play a pivotal role in terminating the signalling via ATP and in producing adenos...