ACTH, Prolactin, Corticosterone and Pituitary Cyclic AMP Responses to Repeated Stress

Abstract

The present experiment was conducted to determine whether the plasma hormonal and pituitary cyclic AMP responses observed following a single exposure to an acute stressor would diminish following re-exposures to the same stressor. Fifteen-min stress exposures (forced running) were separated by 45-min recovery periods. Separate groups of control and stressed animals were sacrificed before and after each of four 15-min stress periods and after each recovery period. The first exposure to 15-min of forced running raised plasma ACTH, corticosterone and pituitary cyclic AMP levels approximately 6-fold and more than tripled levels of plasma prolactin. Plasma ACTH and pituitary responses to the second, third and fourth stress exposures were very similar to the first stress exposure, and levels of these substances returned to prestress levels during each 45-min recovery period. Plasma prolactin responses to the four stress sessions were somewhat variable but no significant trend among the responses was seen. Plasma prolactin levels also returned to prestress levels between stress exposures. Corticosterone levels were similar following each of the four stress sessions but levels remained elevated compared to prestress levels between stress exposures. These data suggest that pituitary responses to acute stress are rapid, that return to prestress levels is also rapid, with the exception of corticosterone, and that repeated responses of the same magnitude may be evoked when stressors are separated by short recovery periods. Keywords: ACTH; Corticosterone; Pituitary cyclic AMP; Stress physiology; Rats; Reprints.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 1989
Accession Number
ADA212567

Entities

People

  • Edward H. Mougey
  • G. J. Kant
  • James L. Meyerhoff

Organizations

  • Walter Reed Army Institute of Research

Tags

DTIC Thesaurus Topics

  • Animals
  • Brain
  • Catecholamines
  • Chemical Compounds
  • Chemistry
  • Endocrine Glands
  • Glands
  • Hormones
  • Laboratory Animals
  • Operating Systems
  • Pituitary And Hypothalamic Hormones And Analogues
  • Pituitary Glands
  • Recovery
  • Regulations
  • Secretion
  • Sensitivity

Fields of Study

  • Psychology

Readers

  • Neuroscience
  • Structural Health Monitoring of Composite Structures.
  • Toxicology/Environmental Toxicology