Oxytocin Attenuates Stress-Induced c-fosmRNA Expression in Specific Forebrain Regions Associated with Modulation of Hypothalamo–Pituitary–Adrenal Activity
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Open Access
- 24 March 2004
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 24 (12) , 2974-2982
- https://doi.org/10.1523/jneurosci.3432-03.2004
Abstract
We reported previously that the neuropeptide oxytocin attenuates stress-induced hypothalamo–pituitary–adrenal (HPA) activity and anxiety behavior. This study sought to identify forebrain target sites through which oxytocin may mediate its anti-stress effects. Ovariectomized, estradiol-treated rats received intracerebroventricular infusions of oxytocin (1 or 10 ng/hr) or vasopressin (10 ng/hr), and the patterns of neuronal activation after restraint stress were determined by semiquantitative mapping of c-fosmRNA expression. Oxytocin administration significantly attenuated the release of ACTH and corticosterone and the increase in corticotropin-releasing factor mRNA expression in the hypothalamic paraventricular nucleus (PVN) in response to 30 min restraint. Restraint also induced the expression of c-fosmRNA in selective regions of the forebrain, including the PVN, paraventricular thalamic nucleus, habenula, medial amygdala, ventrolateral septum (LSV), most subfields of the dorsal and ventral hippocampus, and piriform and endopiriform cortices. In most cases, this level of gene expression was unaffected by concomitant administration of oxytocin. However, in the PVN, LSV, and throughout all subfields of the dorsal hippocampus, restraint evoked no detectable increase in c-fosmRNA in animals treated with either dose of oxytocin. Vasopressin had no effects on either HPA axis responses or neuronal activation in response to restraint, indicating that the effects were highly peptide selective. These data show that central oxytocin attenuates both the stress-induced neuroendocrine and molecular responses of the HPA axis and that the dorsal hippocampus, LSV, and PVN constitute an oxytocin-sensitive forebrain stress circuit.Keywords
This publication has 59 references indexed in Scilit:
- Local circuit regulation of paraventricular nucleus stress integration: Glutamate–GABA connectionsPharmacology Biochemistry and Behavior, 2002
- Behavioural impact of intraseptally released vasopressin and oxytocin in ratsExperimental Physiology, 2000
- Neuroendocrine and Behavioral Responses and Brain Pattern of c‐fos Induction Associated with Audiogenic StressJournal of Neuroendocrinology, 1997
- Distribution of oxytocin- and vasopressin-binding sites in the rat extended amygdala: a histoautoradiographic studyJournal of Comparative Neurology, 1997
- Vasopressin and Oxytocin Receptors in the Central Nervous SystemCritical Reviews™ in Neurobiology, 1996
- HAEMODYNAMIC AND HUMORAL CONSEQUENCES OF CHRONIC INFUSION OF VASOPRESSIN IN CONSCIOUS RATSClinical and Experimental Pharmacology and Physiology, 1993
- Regional Changes in Brain Oxytocin Receptors Post‐Partum: Time‐Course and Relationship to Maternal BehaviourJournal of Neuroendocrinology, 1990
- Dissociation of oxytocin, vasopressin and corticotropin secretion during different types of stressLife Sciences, 1984
- Oxytocin potentiates the ACTH-releasing activity of CRF(41) but not vasopressinLife Sciences, 1984
- Oxytocin as well as vasopressin potentiate ovine CRF in vitroPeptides, 1983