Literature DB >> 29024187

Diversity of oxytocin neurons: beyond magno- and parvocellular cell types?

Ferdinand Althammer1, Valery Grinevich1,2,3.   

Abstract

The hypothalamic neuropeptide oxytocin (OT), which is evolutionarily conserved among different species throughout the animal kingdom, is a key modulator of a variety of socio-emotional behaviors such as fear, trust and empathy. OT cells in the mammalian hypothalamus have been traditionally divided into two distinct types - magnocellular (magnOT) and parvocellular (parvOT) or preautonomic neurons. This distinction is based on OT cell sizes and shapes, projections, electrophysiological activity and functions. Indeed, while neuroendocrine magnOT neurons are known to primarily project their axons to the posterior pituitary and to a number of forebrain regions, non-neuroendocrine parvOT neurons have been seen as the main source of OT innervation of the brainstem and spinal cord to control autonomic functions and pain perception. However, very recent findings demonstrated distinct genetic profiles in OT neurons, allowing discrimination of at least four types of cells expressing OT. Furthermore, unexpected axonal projections of parvOT neurons to the forebrain and magnOT neurons to the midbrain have been newly reported. In this review, we focus on the detailed analysis of methods of distinction between OT cell types, in- and output sites, morphology as well as on the direct connectivity between OT neurons and its physiological significance. At the end, we propose a hypothesis that the central OT system is composed of more than just two OT cell types, which should be further verified by the application of available genetic and anatomical techniques. This article is protected by copyright. All rights reserved. This article is protected by copyright. All rights reserved.

Entities:  

Keywords:  Oxytocin; cell types; magnocellular neurons; parvocellular neurons

Year:  2017        PMID: 29024187     DOI: 10.1111/jne.12549

Source DB:  PubMed          Journal:  J Neuroendocrinol        ISSN: 0953-8194            Impact factor:   3.627


  24 in total

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7.  Altered PVN-to-CA2 hippocampal oxytocin pathway and reduced number of oxytocin-receptor expressing astrocytes in heart failure rats.

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8.  The Role of Intranasal Oxytocin on Social Cognition: An Integrative Human Lifespan Approach.

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Journal:  Curr Behav Neurosci Rep       Date:  2020-09-12

9.  Oxytocinergic Feedback Circuitries: An Anatomical Basis for Neuromodulation of Social Behaviors.

Authors:  Arthur Lefevre; Diego Benusiglio; Yan Tang; Quirin Krabichler; Alexandre Charlet; Valery Grinevich
Journal:  Front Neural Circuits       Date:  2021-06-14       Impact factor: 3.492

10.  Parallel Social Information Processing Circuits Are Differentially Impacted in Autism.

Authors:  Eastman M Lewis; Genevieve L Stein-O'Brien; Alejandra V Patino; Romain Nardou; Cooper D Grossman; Matthew Brown; Bidii Bangamwabo; Ndeye Ndiaye; Daniel Giovinazzo; Ian Dardani; Connie Jiang; Loyal A Goff; Gül Dölen
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