Dopaminergic dynamics underlying sex-specific cocaine reward

Erin S. Calipari(Allen Institute for Brain Science), Barbara Juarez(Allen Institute for Brain Science), Carole Morel(Allen Institute for Brain Science), Deena M. Walker(Allen Institute for Brain Science), Michael E. Cahill(Allen Institute for Brain Science), Efrain Ribeiro(Allen Institute for Brain Science), Ciorana Roman-Ortiz(Allen Institute for Brain Science), Charu Ramakrishnan(Stanford University), Karl Deisseroth(Stanford University), Ming‐Hu Han(Allen Institute for Brain Science), Eric J. Nestler(Allen Institute for Brain Science)
Nature Communications
January 10, 2017
Cited by 368Open Access
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Abstract

Although both males and females become addicted to cocaine, females transition to addiction faster and experience greater difficulties remaining abstinent. We demonstrate an oestrous cycle-dependent mechanism controlling increased cocaine reward in females. During oestrus, ventral tegmental area (VTA) dopamine neuron activity is enhanced and drives post translational modifications at the dopamine transporter (DAT) to increase the ability of cocaine to inhibit its function, an effect mediated by estradiol. Female mice conditioned to associate cocaine with contextual cues during oestrus have enhanced mesolimbic responses to these cues in the absence of drug. Using chemogenetic approaches, we increase VTA activity to mechanistically link oestrous cycle-dependent enhancement of VTA firing to enhanced cocaine affinity at DAT and subsequent reward processing. These data have implications for sexual dimorphism in addiction vulnerability and define a mechanism by which cellular activity results in protein alterations that contribute to dysfunctional learning and reward processing.


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