Literature DB >> 33580392

Dynorphin/Kappa-Opioid Receptor System Modulation of Cortical Circuitry.

Hugo A Tejeda1, Huikun Wang2, Rodolfo J Flores2, Hector E Yarur2.   

Abstract

Cortical circuits control a plethora of behaviors, from sensation to cognition. The cortex is enriched with neuropeptides and receptors that play a role in information processing, including opioid peptides and their cognate receptors. The dynorphin (DYN)/kappa-opioid receptor (KOR) system has been implicated in the processing of sensory and motivationally-charged emotional information and is highly expressed in cortical circuits. This is important as dysregulation of DYN/KOR signaling in limbic and cortical circuits has been implicated in promoting negative affect and cognitive deficits in various neuropsychiatric disorders. However, research investigating the role of this system in controlling cortical circuits and computations therein is limited. Here, we review the (1) basic anatomy of cortical circuits, (2) anatomical architecture of the cortical DYN/KOR system, (3) functional regulation of cortical synaptic transmission and microcircuit function by the DYN/KOR system, (4) regulation of behavior by the cortical DYN/KOR system, (5) implications for the DYN/KOR system for human health and disease, and (6) future directions and unanswered questions for the field. Further work elucidating the role of the DYN/KOR system in controlling cortical information processing and associated behaviors will be of importance to increasing our understanding of principles underlying neuropeptide modulation of cortical circuits, mechanisms underlying sensation and perception, motivated and emotional behavior, and cognition. Increased emphasis in this area of study will also aid in the identification of novel ways to target the DYN/KOR system to treat neuropsychiatric disorders.

Entities:  

Keywords:  Aversion; Circuits; Cognition; Dynorphin; Kappa-opioid receptor; Learning and memory; Prefrontal cortex; Reward

Year:  2021        PMID: 33580392     DOI: 10.1007/164_2021_440

Source DB:  PubMed          Journal:  Handb Exp Pharmacol        ISSN: 0171-2004


  3 in total

1.  Kappa-opioid receptor activation reinstates nicotine self-administration in mice.

Authors:  Raajaram Gowrishankar; Adrian Gomez; Marie Waliki; Michael R Bruchas
Journal:  Addict Neurosci       Date:  2022-04-05

Review 2.  Neuropeptide System Regulation of Prefrontal Cortex Circuitry: Implications for Neuropsychiatric Disorders.

Authors:  Sanne M Casello; Rodolfo J Flores; Hector E Yarur; Huikun Wang; Monique Awanyai; Miguel A Arenivar; Rosario B Jaime-Lara; Hector Bravo-Rivera; Hugo A Tejeda
Journal:  Front Neural Circuits       Date:  2022-06-21       Impact factor: 3.342

3.  Dysregulated kappa-opioid receptors in the medial prefrontal cortex contribute to working memory deficits in alcohol dependence.

Authors:  Gengze Wei; Sunil Sirohi; Brendan M Walker
Journal:  Addict Biol       Date:  2022-03       Impact factor: 4.093

  3 in total

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