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Effects of excessive glucocorticoid receptor stimulation during early gestation on psychomotor and social behavior in the rat

  • Karine Kleinhaus
  • , Sara Steinfeld
  • , Jordan Balaban
  • , Leora Goodman
  • , Tara S. Craft
  • , Dolores Malaspina
  • , Michael M. Myers
  • , Holly Moore
  • Columbia University
  • New York University

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Severe psychological stress in the first trimester of pregnancy increases the risk of schizophrenia in the offspring. To begin to investigate the role of glucocorticoid receptors in this association, we determined the effects of the glucocorticoid dexamethasone (2 mg/kg), administered to pregnant rats on gestation days 6-8, on maternal behaviors and schizophrenia-relevant behaviors in the offspring. Dams receiving dexamethasone exhibited increased milk ejection bouts during nursing. Offspring of dexamethasone-treated dams (DEX) showed decreased juvenile social play and a blunted acoustic startle reflex in adolescence and adulthood, effects that were predicted by frequency of milk ejections in the dams. DEX offspring also showed increased prepulse inhibition of startle and reduced amphetamine-induced motor activity, effects not correlated with maternal behavior. It is postulated that over-stimulation of receptors targeted by glucocorticoids in the placenta or other maternal tissues during early gestation can lead to psychomotor and social behavioral deficits in the offspring. Moreover, some of these deficits may be mediated by alterations in postnatal maternal behavior and physiology produced by early gestational exposure to excess glucocorticoids.

Original languageEnglish
Pages (from-to)121-132
Number of pages12
JournalDevelopmental Psychobiology
Volume52
Issue number2
DOIs
StatePublished - Mar 2010

Keywords

  • Acoustic startle response
  • Autism
  • Dexamethasone
  • Hypothalamic-pituitary-adrenal axis
  • Prenatal stress
  • Psychomotor development
  • Rat
  • Schizophrenia
  • Sensorimotor gating
  • Social play
  • Stress hormones

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