Dopamine-D1 and δ-opioid receptors co-exist in rat striatal neurons

نویسندگان

  • L. M. Ambrose-Lanci
  • Thomas Jefferson
  • S. M. Gallagher
  • E. M. Unterwald
  • E. J. Van Bockstaele
  • Lisa M. Ambrose
چکیده

Part of the Medical Neurobiology Commons This Article is brought to you for free and open access by the Jefferson Digital Commons. The Jefferson Digital Commons is a service of Thomas Jefferson University's Center for Teaching and Learning (CTL). The Commons is a showcase for Jefferson books and journals, peer-reviewed scholarly publications, unique historical collections from the University archives, and teaching tools. The Jefferson Digital Commons allows researchers and interested readers anywhere in the world to learn about and keep up to date with Jefferson scholarship. and δ-opioid receptors co-exist in rat striatal neurons" (2006). Department of Neurosurgery Faculty Papers. Paper 1. Abstract Cocaine's enhancement of dopaminergic neurotransmission in the mesolimbic pathway plays a critical role in the initial reinforcing properties of this drug. However, other neurotransmitter systems are also integral to the addiction process. A large body of data indicates that opioids and dopamine together mediate emotional and reinforced behaviors. In support of this, cocaine-mediated increases in activation of dopamine D1 receptors (D1R) results in a desensitization of-opioid receptor (DOR) signaling through adenylyl cyclase (AC) in striatal neurons. To further define cellular mechanisms underlying this effect, the subcellular distribution of DOR and D1R was examined in the rat dorsolateral striatum. Dual immunoperoxidase/gold-silver detection combined with electron microscopy was used to identify DOR and D1R immunoreactivities in the same section of tissue. Semi-quantitative analysis revealed that a subset of dendritic cellular profiles exhibited both DOR and D1R immunoreactivities. Of 165 randomly sampled D1R immunoreactive profiles, 43% contained DOR. Similarly of 198 DOR-labeled cellular profiles, 52% contained D1R. The present data provide ultrastructural evidence for coexistence between DOR and D1R in striatal neurons, suggesting a possible mechanism whereby D1R modulation may alter DOR function. Ambrose et. al.

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تاریخ انتشار 2015