The presence of adenosine in all nervous system cells (neurones and glia) together with its intensive release following insults makes adenosine as a sort of ‘regulator’ of synaptic communication, leading to the homeostatic coordination of brain function. Besides the direct actions of adenosine on the neurosecretory mechanisms, to tune neurotransmitter release, adenosine receptors interact with other receptors as well as with transporters as part of its attempt to fine-tune synaptic transmission. This review will focus on examples of the different ways adenosine can use to modulate or metamodulate synapses, in other words, to trigger or brake the action of some neurotransmitters and neuromodulators, to cross-talk with other G protei...
Synaptosomes from various rat brain areas show saturable and specific binding to an adenosine A(1) r...
AbstractAdenosine acts in parallel as a neuromodulator and as a homeostatic modulator in the central...
©2004 Society for NeuroscienceBoth brain-derived neurotrophic factor (BDNF) and adenosine influence ...
Abstract: The ‘omnipresence ’ of adenosine in all nervous system cells (neurons and glia) together w...
© 1999 Elsevier Science B.V. All rights reserved.Adenosine, by activating adenosine A2A receptors, s...
Adenosine is a prototypical neuromodulator, which mainly controls excitatory transmission through th...
© 2005 International Society for NeurochemistryAdenosine, a neuromodulator of the CNS, activates inh...
© 2003 Elsevier ScienceAdenosine is a ubiquitous homeostatic substance released from most cells, inc...
International audienceExtracellular adenosine, a key regulator of neuronal excitability, is metaboli...
Synaptic transmission is an essential process for neuron physiology. Such process is enabled in part...
© 2016 International Society for NeurochemistryPhysiological network functioning in the hippocampus ...
ADENOSINE is present in large amounts in the mammalian brain and plays a role as an endogenous modul...
Extracellular adenosine, a key regulator of neuronal excitability, is metabolized by astrocyte-based...
Adenosine receptors modulate neuronal and synaptic function in a range of ways that may make them re...
© Springer Science+Business Media Dordrecht 2015.Adenosine, through A(2A) receptor (A(2A)R) activati...
Synaptosomes from various rat brain areas show saturable and specific binding to an adenosine A(1) r...
AbstractAdenosine acts in parallel as a neuromodulator and as a homeostatic modulator in the central...
©2004 Society for NeuroscienceBoth brain-derived neurotrophic factor (BDNF) and adenosine influence ...
Abstract: The ‘omnipresence ’ of adenosine in all nervous system cells (neurons and glia) together w...
© 1999 Elsevier Science B.V. All rights reserved.Adenosine, by activating adenosine A2A receptors, s...
Adenosine is a prototypical neuromodulator, which mainly controls excitatory transmission through th...
© 2005 International Society for NeurochemistryAdenosine, a neuromodulator of the CNS, activates inh...
© 2003 Elsevier ScienceAdenosine is a ubiquitous homeostatic substance released from most cells, inc...
International audienceExtracellular adenosine, a key regulator of neuronal excitability, is metaboli...
Synaptic transmission is an essential process for neuron physiology. Such process is enabled in part...
© 2016 International Society for NeurochemistryPhysiological network functioning in the hippocampus ...
ADENOSINE is present in large amounts in the mammalian brain and plays a role as an endogenous modul...
Extracellular adenosine, a key regulator of neuronal excitability, is metabolized by astrocyte-based...
Adenosine receptors modulate neuronal and synaptic function in a range of ways that may make them re...
© Springer Science+Business Media Dordrecht 2015.Adenosine, through A(2A) receptor (A(2A)R) activati...
Synaptosomes from various rat brain areas show saturable and specific binding to an adenosine A(1) r...
AbstractAdenosine acts in parallel as a neuromodulator and as a homeostatic modulator in the central...
©2004 Society for NeuroscienceBoth brain-derived neurotrophic factor (BDNF) and adenosine influence ...