Estradiol interacts with an opioidergic network to achieve rapid modulation of a vocal pattern generator
Open Access
- 25 December 2009
- journal article
- research article
- Published by Springer Nature in Journal of Comparative Physiology A
- Vol. 196 (2) , 137-146
- https://doi.org/10.1007/s00359-009-0500-1
Abstract
Estrogens rapidly regulate neuronal activity within seconds-to-minutes, yet it is unclear how estrogens interact with neural circuits to rapidly coordinate behavior. This study examines whether 17-beta-estradiol interacts with an opioidergic network to achieve rapid modulation of a vocal control circuit. Adult plainfin midshipman fish emit vocalizations that mainly differ in duration, and rhythmic activity of a hindbrain–spinal vocal pattern generator (VPG) directly establishes the temporal features of midshipman vocalizations. VPG activity is therefore predictive of natural calls, and ‘fictive calls’ can be elicited by electrical microstimulation of the VPG. Prior studies show that intramuscular estradiol injection rapidly (within 5 min) increases fictive call duration in midshipman. Here, we delivered opioid antagonists near the VPG prior to estradiol injection. Rapid estradiol actions on fictive calling were completely suppressed by the broad-spectrum opioid antagonist naloxone and the mu-opioid antagonist beta-funaltrexamine, but were unaffected by the kappa-opioid antagonist nor-binaltorphimine. Unexpectedly, prior to estradiol administration, all three opioid antagonists caused immediate, transient reductions in fictive call duration. Together, our results indicate that: (1) vocal activity is modulated by opioidergic networks, confirming hypotheses from birds and mammals, and (2) the rapid actions of estradiol on vocal patterning depend on interactions with a mu-opioid modulatory network.Keywords
This publication has 75 references indexed in Scilit:
- Ovarian steroids alter mu opioid receptor trafficking in hippocampal parvalbumin GABAergic interneuronsExperimental Neurology, 2009
- A naloxonazine sensitive (μ1 receptor) mechanism in the parabrachial nucleus modulates eatingBrain Research, 2008
- Evolutionary Origins for Social Vocalization in a Vertebrate Hindbrain–Spinal CompartmentScience, 2008
- Central pattern generators for social vocalization: Androgen-dependent neurophysiological mechanismsHormones and Behavior, 2008
- Effects of mu, kappa, and delta opioid receptor agonists on the function of hypothalamic–pituitary–adrenal axis in monkeysPsychoneuroendocrinology, 2008
- The Neural Control of Vocalization in Mammals: A ReviewJournal of Voice, 2008
- Functional significance of the rapid regulation of brain estrogen action: Where do the estrogens come from?Brain Research, 2006
- Midbrain Periaqueductal Gray and Vocal Patterning in a Teleost FishJournal of Neurophysiology, 2006
- Estrogen and μ-opioid receptor antagonists counteract the 17β-estradiol-induced licking increase and interferon-γ reduction occurring during the formalin test in male ratsPain, 2004
- Identification, partial characterization, and hypothalamic distribution of κ, μ, and δ opioid receptors in a passerine songbird (Junco hyemalis)Brain Research, 1993