Circadian Variations in Plasma Corticosterone Permit Normal Termination of Adrenocorticotropin Responses to Stress*
- 1 April 1988
- journal article
- research article
- Published by The Endocrine Society in Endocrinology
- Vol. 122 (4) , 1343-1348
- https://doi.org/10.1210/endo-122-4-1343
Abstract
We previously reported that adrenalectomized rats given constant corticosterone via a sc pellet (B-PELLET) hypersecrete ACTH in response to stress. Although lacking a feedback signal, B-PELLET rats do not secrete ACTH indefinitely after stress; plasma ACTH levels in these animals returned to those in sham-operated (SHAM) rats within 1-4 h after 2-min restraint. To distinguish between the requirement for circadian or stress-induced increases in corticosterone, we compared changes in ACTH and corticosterone levels after stress in SHAM and B-PELLET rats with those in cyanoketone-treated rats (CK) and adrenalectomized rats given corticosterone in their drinking fluid (B-WATER). B-WATER rats exhibited sustained increases in plasma corticosterone after lights-off correlating with the nocturnal feeding period. Morning plasma corticosterone levels in B-WATER rats were constant and even lower than those in B-PELLET rats; however, B-WATER rats did not differ from SHAM rats in their ACTH response to ip injection. CK rats, which have an approximately normal circadian corticosterone rhythm but do not have significant corticosterone responses to acute stimuli, also exhibited plasma ACTH levels similar to those of SHAM rats at all times after 5-min restraint. Compared with SHAM and B-WATER rats in the same experiment, B-PELLET rats tended to hypersecrete ACTH 60 min after 5 min of restraint, but only had significantly elevated plasma ACTH rleative to both groups 45 min after 10 min of restraint. We conclude that circadian, rather than stress-induced, increases in corticosterone may be sufficient for normal termination of ACTH responses to stress.This publication has 13 references indexed in Scilit:
- Differential Response of Type I and Type II Corticosteroid Receptors to Changes in Plasma Steroid Level and Circadian RhythmicityNeuroendocrinology, 1987
- Reset of Feedback in the Adrenocortical System: An Apparent Shift in Sensitivity of Adrenocorticotropin to Inhibition by Corticosterone between Morning and Evening*Endocrinology, 1986
- Two Receptor Systems for Corticosterone in Rat Brain: Microdistribution and Differential OccupationEndocrinology, 1985
- Corticosterone: narrow range required for normal body and thymus weight and ACTHAmerican Journal of Physiology-Regulatory, Integrative and Comparative Physiology, 1985
- The development of the glucocorticoid receptor system in the rat limbic brain. III. Negative-feedback regulationDevelopmental Brain Research, 1985
- Glucocorticoid-sensitive hippocampal neurons are involved in terminating the adrenocortical stress response.Proceedings of the National Academy of Sciences, 1984
- Stress Down-Regulates Corticosterone Receptors in a Site-Specific Manner in the Brain*Endocrinology, 1984
- Nonsteroidal adrenal feedback demarcates two types of pathways to CRF-ACTH releaseAmerican Journal of Physiology-Endocrinology and Metabolism, 1981
- Effects of Destruction of the Suprachiasmatic Nuclei on the Circadian Rhythms in Plasma Corticosterone, Body Temperature, Feeding and Plasma ThyrotropinNeuroendocrinology, 1979
- PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENTJournal of Biological Chemistry, 1951