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      Oxytocin Receptors Are Expressed on Dopamine and Glutamate Neurons in the Mouse Ventral Tegmental Area That Project to Nucleus Accumbens and Other Mesolimbic Targets

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          Abstract

          The mesolimbic dopamine (DA) circuitry determines which behaviors are positively reinforcing and therefore should be encoded in the memory to become a part of the behavioral repertoire. Natural reinforcers, like food and sex, activate this pathway, thereby increasing the likelihood of further consummatory, social, and sexual behaviors. Oxytocin (OT) has been implicated in mediating natural reward and OT-synthesizing neurons project to the ventral tegmental area (VTA) and nucleus accumbens (NAc); however, direct neuroanatomical evidence of OT regulation of DA neurons within the VTA is sparse. To phenotype OT-receptor (OTR) expressing neurons originating within the VTA, we delivered Creinducible adeno-associated virus that drives the expression of fluorescent marker into the VTA of male mice that had Cre-recombinase driven by OTR gene expression. OTR-expressing VTA neurons project to NAc, prefrontal cortex, the extended amygdala, and other forebrain regions but less than 10% of these OTR-expressing neurons were identified as DA neurons (defined by tyrosine hydroxylase colocalization). Instead, almost 50% of OTR-expressing cells in the VTA were glutamate (GLU) neurons, as indicated by expression of mRNA for the vesicular GLU transporter (vGluT). About one-third of OTR-expressing VTA neurons did not colocalize with either DA or GLU phenotypic markers. Thus, OTR expression by VTA neurons implicates that OT regulation of reward circuitry is more complex than a direct action on DA neurotransmission.

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          Author and article information

          Journal
          0406041
          4668
          J Comp Neurol
          J. Comp. Neurol.
          The Journal of comparative neurology
          0021-9967
          1096-9861
          17 April 2019
          27 September 2016
          01 April 2017
          25 April 2019
          : 525
          : 5
          : 1094-1108
          Affiliations
          [1 ]Department of Pharmacodynamics, University of Florida, Gainesville, Florida, USA
          [2 ]Department of Physiology and Functional Genomics, University of Florida, Gainesville, Florida, USA
          Author notes

          ROLE OF AUTHORS

          All authors contributed significantly to the research that led to preparation of the article. All authors had full access to all the data in the study and take responsibility for the integrity of the data and the accuracy of the data analysis. Study concept and design: JP, KM, EK. Acquisition of data: KM, EK, AD, JS, LW. Analysis and interpretation of data: KM, JP, EK, AD. Drafting of the article: KM, JP, EK. Critical revision of the article for important intellectual content: EK, AD. Statistical analysis: KM, JS, LW. Obtained funding: JP, EK. Administrative, technical, and material support: JS, AD, LW, EK. Study supervision: JP, EK.

          [* ]CORRESPONDENCE TO: Joanna Peris, PhD, or Eric G. Krause, PhD, Box 100487, Department of Pharmacodynamics, University of Florida, Gainesville, FL, 32610. peris@ 123456ufl.edu or ekrause@ 123456cop.ufl.edu
          Article
          PMC6483090 PMC6483090 6483090 nihpa1023470
          10.1002/cne.24116
          6483090
          27615433
          d7bce254-08b6-477a-9710-d1212b999919
          History
          Categories
          Article

          RRID:AB_1524535,RRID: AB_11180858,RRID: AB_11180326,dopamine,glutamate,ventral tegmental area,nucleus accumbens,oxytocin receptors

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