Repeated threat (without direct harm) alters metabolic capacity in select regions that drive defensive behavior. (14th June 2017)
- Record Type:
- Journal Article
- Title:
- Repeated threat (without direct harm) alters metabolic capacity in select regions that drive defensive behavior. (14th June 2017)
- Main Title:
- Repeated threat (without direct harm) alters metabolic capacity in select regions that drive defensive behavior
- Authors:
- Kim, D.J.
Lee, A.S.
Yttredahl, A.A.
Gómez-Rodríguez, R.
Anderson, B.J. - Abstract:
- Highlights: Exposure to threats during foraging in a rodent habitat potentiates defensive behaviors. We tested brain regional metabolic capacity after exposure to the same habitat. Cytochrome oxidase (COX) reactivity increased in the lateral septum and hypothalamic dorsal premammilary nucleus. COX decreased in the hippocampus and periaqueductal gray. These regions are candidate locations for the plasticity supporting potentiated behavioral responses. Abstract: To understand the behavioral consequences of intermittent anticipatory stress resulting from threats without accompanying physiological challenges, we developed a semi-naturalistic rodent housing and foraging environment that can include threats that are unpredictable in timing. Behavior is automatically recorded while rats forage for food or water. Over three weeks, the threats have been shown to elicit risk assessment behaviors, increase defensive burying and increase adrenal gland weight. To identify brain regions activated by this manipulation, we measured cytochrome c oxidase (COX), which is tightly coupled to neural activity. Adolescent male Sprague–Dawley rats were randomly assigned to control (CT) or unpredictable threat/stress (ST) housing conditions consisting of two tub cages, one with food and another with water, separated by a tunnel. Over three weeks (P31–P52), the ST group received randomly timed (probability of 0.25), simultaneous presentations of ferret odor, an abrupt light, and sound at the center ofHighlights: Exposure to threats during foraging in a rodent habitat potentiates defensive behaviors. We tested brain regional metabolic capacity after exposure to the same habitat. Cytochrome oxidase (COX) reactivity increased in the lateral septum and hypothalamic dorsal premammilary nucleus. COX decreased in the hippocampus and periaqueductal gray. These regions are candidate locations for the plasticity supporting potentiated behavioral responses. Abstract: To understand the behavioral consequences of intermittent anticipatory stress resulting from threats without accompanying physiological challenges, we developed a semi-naturalistic rodent housing and foraging environment that can include threats that are unpredictable in timing. Behavior is automatically recorded while rats forage for food or water. Over three weeks, the threats have been shown to elicit risk assessment behaviors, increase defensive burying and increase adrenal gland weight. To identify brain regions activated by this manipulation, we measured cytochrome c oxidase (COX), which is tightly coupled to neural activity. Adolescent male Sprague–Dawley rats were randomly assigned to control (CT) or unpredictable threat/stress (ST) housing conditions consisting of two tub cages, one with food and another with water, separated by a tunnel. Over three weeks (P31–P52), the ST group received randomly timed (probability of 0.25), simultaneous presentations of ferret odor, an abrupt light, and sound at the center of the tunnel. The ST group had consistently fewer tunnel crossings than the CT group, but similar body weights. Group differences in COX activity were detected in regions implicated in the control of defensive burying. There was an increase in COX activity in the hypothalamic premammillary dorsal nucleus (PMD) and lateral septum (LS), whereas a decrease was observed in the periaqueductal gray (PAG) and CA3 region of the hippocampus. There were no significant differences in the anterior cingulate cortex, prefrontal cortex, striatum or motor cortex. The sites with changes in metabolic capacity are candidates for the sites of plasticity that may underlie the behavioral adaptations to intermittent threats. … (more)
- Is Part Of:
- Neuroscience. Volume 353(2017)
- Journal:
- Neuroscience
- Issue:
- Volume 353(2017)
- Issue Display:
- Volume 353, Issue 2017 (2017)
- Year:
- 2017
- Volume:
- 353
- Issue:
- 2017
- Issue Sort Value:
- 2017-0353-2017-0000
- Page Start:
- 106
- Page End:
- 118
- Publication Date:
- 2017-06-14
- Subjects:
- 2-DG 2-deoxyglucose -- AHN anterior hypothalamic nuclei -- COX cytochrome c oxidase -- dACC dorsal anterior cingulate cortex -- HPA hypothalamic–pituitary–adrenal -- LS lateral septum -- MOD mean optical density -- mPFC medial prefrontal cortex -- PAG periaqueductal gray -- PMD premammillary dorsal nucleus -- ROIs regions or interest
stress -- predator threat -- cytochrome oxidase -- metabolic capacity -- hippocampus -- periaqueductal gray
Neurochemistry -- Periodicals
Neurophysiology -- Periodicals
Neurology -- Periodicals
Neurochimie -- Périodiques
Neurophysiologie -- Périodiques
Neurochemistry
Neurophysiology
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612.8 - Journal URLs:
- http://www.sciencedirect.com/science/journal/03064522 ↗
http://www.clinicalkey.com/dura/browse/journalIssue/03064522 ↗
http://www.clinicalkey.com.au/dura/browse/journalIssue/03064522 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.neuroscience.2017.04.012 ↗
- Languages:
- English
- ISSNs:
- 0306-4522
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- Legaldeposit
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