CB1 cannabinoid receptors (CB1) are located at axon terminals and effectively control synaptic communication and thereby circuit operation widespread in the CNS. Although it is partially uncovered how CB1 activation leads to the reduction of synaptic excitation, the mechanisms of the decrease of GABA release upon activation of these cannabinoid receptors remain elusive. To determine the mechanisms underlying the suppression of synaptic transmission by CB1 at GABAergic synapses, we recorded unitary IPSCs (uIPSCs) at cholecystokinin-expressing interneuron-pyramidal cell connections and imaged presynaptic [Ca(2+)] transients in mouse hippocampal slices. Our results reveal a power function with an exponent of 2.2 between the amplitude of uIPSCs...
AbstractBrief depolarization of cerebellar Purkinje cells was found to inhibit parallel fiber and cl...
Cannabinoids modulate inhibitory GABAergic neurotransmission in many brain regions. Within the tempo...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
The release of GABA from cholecystokinin-containing interneurons is modulated by type-1 cannabinoid ...
AbstractSince cannabinoid receptors inhibit excitatory synaptic transmission by reducing glutamate r...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
AbstractWe investigated the effect of a synthetic cannabinoid, WIN 55,212-2 on excitatory postsynapt...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
BACKGROUND AND PURPOSE: Both cannabinoid CB1 and adenosine A2A receptors (CB1 receptors and A2A rece...
AbstractBrief depolarization of cerebellar Purkinje cells was found to inhibit parallel fiber and cl...
Cannabinoids modulate inhibitory GABAergic neurotransmission in many brain regions. Within the tempo...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
The release of GABA from cholecystokinin-containing interneurons is modulated by type-1 cannabinoid ...
AbstractSince cannabinoid receptors inhibit excitatory synaptic transmission by reducing glutamate r...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
UNLABELLED: Persistent CB1 cannabinoid receptor activity limits neurotransmitter release at various ...
AbstractWe investigated the effect of a synthetic cannabinoid, WIN 55,212-2 on excitatory postsynapt...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...
BACKGROUND AND PURPOSE: Both cannabinoid CB1 and adenosine A2A receptors (CB1 receptors and A2A rece...
AbstractBrief depolarization of cerebellar Purkinje cells was found to inhibit parallel fiber and cl...
Cannabinoids modulate inhibitory GABAergic neurotransmission in many brain regions. Within the tempo...
Cannabinoids are known to regulate inhibitory synaptic transmission via activation of presynaptic G ...