SummaryRepeated exposure to cocaine causes sensitized behavioral responses and increased dendritic spines on medium spiny neurons of the nucleus accumbens (NAc). We find that cocaine regulates myocyte enhancer factor 2 (MEF2) transcription factors to control these two processes in vivo. Cocaine suppresses striatal MEF2 activity in part through a mechanism involving cAMP, the regulator of calmodulin signaling (RCS), and calcineurin. We show that reducing MEF2 activity in the NAc in vivo is required for the cocaine-induced increases in dendritic spine density. Surprisingly, we find that increasing MEF2 activity in the NAc, which blocks the cocaine-induced increase in dendritic spine density, enhances sensitized behavioral responses to cocaine...
We previously showed that cocaine self-administration increases spine density in CA1 hippocampal neu...
SummaryMedial prefrontal cortex (mPFC) is known to be involved in relapse after cocaine withdrawal, ...
A great deal of research has focused on elucidating what makes cocaine so addictive. While cocaine\u...
Repeated cocaine administration increases the dendritic arborization of nucleus accumbens neurons, b...
金沢大学附属病院神経科精神科Chronic cocaine treatment is associated with changes in dendritic spines in the nucleu...
The development of addictive behavior is associated with functional and structural plasticity in the...
International audienceThe development of addictive behavior is associated with functional and struct...
Repeated exposure to cocaine increases the density of dendritic spines on medium spiny neurons in th...
International audienceBackground: Repeated cocaine exposure produces new spine formation in Striatal...
Background: The nucleus accumbens (NAc) is a brain region critically involved in psychostimulant-ind...
Addictive drug use causes long-lasting changes in synaptic strength and dendritic spine morphology i...
We studied the influence of cocaine use on the structure of neurons in brain regions that contribute...
Brain-derived neurotrophic factor (BDNF) contributes to diverse types of plasticity, including cocai...
International audienceBackground: Repeated cocaine exposure produces new spine formation in striatal...
BackgroundAddiction relies on persistent alterations of neuronal properties, which depends on gene r...
We previously showed that cocaine self-administration increases spine density in CA1 hippocampal neu...
SummaryMedial prefrontal cortex (mPFC) is known to be involved in relapse after cocaine withdrawal, ...
A great deal of research has focused on elucidating what makes cocaine so addictive. While cocaine\u...
Repeated cocaine administration increases the dendritic arborization of nucleus accumbens neurons, b...
金沢大学附属病院神経科精神科Chronic cocaine treatment is associated with changes in dendritic spines in the nucleu...
The development of addictive behavior is associated with functional and structural plasticity in the...
International audienceThe development of addictive behavior is associated with functional and struct...
Repeated exposure to cocaine increases the density of dendritic spines on medium spiny neurons in th...
International audienceBackground: Repeated cocaine exposure produces new spine formation in Striatal...
Background: The nucleus accumbens (NAc) is a brain region critically involved in psychostimulant-ind...
Addictive drug use causes long-lasting changes in synaptic strength and dendritic spine morphology i...
We studied the influence of cocaine use on the structure of neurons in brain regions that contribute...
Brain-derived neurotrophic factor (BDNF) contributes to diverse types of plasticity, including cocai...
International audienceBackground: Repeated cocaine exposure produces new spine formation in striatal...
BackgroundAddiction relies on persistent alterations of neuronal properties, which depends on gene r...
We previously showed that cocaine self-administration increases spine density in CA1 hippocampal neu...
SummaryMedial prefrontal cortex (mPFC) is known to be involved in relapse after cocaine withdrawal, ...
A great deal of research has focused on elucidating what makes cocaine so addictive. While cocaine\u...