Study2020Open access

Cortisol levels after cold exposure are independent of adrenocorticotropic hormone stimulation

Shida A, Ikeda T, Tani N, Morioka F, Aoki Y, Ikeda K, Watanabe M, Ishikawa T

PloS one · 19 citations

Review labels

Mechanisms only

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Case-control study (classified by our AI screen)
Studied in
People, plus animal or lab work
Main outcome
Mechanisms only

Who paid for it

Funding
Independent funding
Government
Japan Society for the Promotion of Science
Grants
Japan Society for the Promotion of Science (20K10559)

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2020-02-18 · PLoS One · vol. 15 · issue 2 · p. e0218910
Publisher
Public Library of Science
Cited
24 citations · more than 67% of similar papers · 0.9× the field average
References
86 works
Access
Open access (journal) · CC-BY
Research areas
Stress Responses and Cortisol · Thermal Regulation in Medicine · Adipose Tissue and Metabolism
Keywords
Adrenocorticotropic hormone, Endocrinology, Internal medicine, Hypothermia, Corticosterone, Zona fasciculata, Adrenal gland, ACTH stimulation test, Adrenal cortex, Hormone, Stimulation, Medicine, Biology, Chemistry
MeSH
adrenal glands, cell line, tumor, animals, humans, mice, hypothermia, hydrocortisone, adolescent, adult, aged, aged, 80 and over, middle aged, female, male, adrenocorticotropic hormone

8 authors

From JP

  • Alissa Shida · correspondingOsaka City University
  • Tomoya Ikeda · correspondingOsaka City University
  • Naoto Tani · correspondingOsaka City University
  • Fumiya Morioka · correspondingOsaka City University
  • Yayoi Aoki · correspondingOsaka City University
  • Kei Ikeda · correspondingOsaka City University

Abstract

We previously showed that postmortem serum levels of adrenocorticotropic hormone (ACTH) were significantly higher in cases of hypothermia (cold exposure) than other causes of death. This study examined how the human hypothalamic-pituitary-adrenal axis, and specifically cortisol, responds to hypothermia. Human samples: Autopsies on 205 subjects (147 men and 58 women; age 15-98 years, median 60 years) were performed within 3 days of death. Cause of death was classified as either hypothermia (cold exposure, n = 14) or non-cold exposure (controls; n = 191). Cortisol levels were determined in blood samples obtained from the left and right cardiac chambers and common iliac veins using a chemiluminescent enzyme immunoassay. Adrenal gland tissues samples were stained for cortisol using a rabbit anti-human polyclonal antibody. Cell culture: AtT20, a mouse ACTH secretory cell line, and Y-1, a corticosterone secretory cell line derived from a mouse adrenal tumor, were analyzed in mono-and co-culture, and times courses of ACTH (in AtT20) and corticosterone (in Y-1) secretion were assessed after low temperature exposure mimicking hypothermia and compared with data for samples collected postmortem for other cases of death. However, no correlation between ACTH concentration and cortisol levels was observed in hypothermia cases. Immunohistologic analyses of samples from hypothermia cases showed that cortisol staining was localized primarily to the nucleus rather than the cytoplasm of cells in the zona fasciculata of the adrenal gland. During both mono-culture and co-culture, AtT20 cells secreted high levels of ACTH after 10-15 minutes of cold exposure, whereas corticosterone secretion by Y-1 cells increased slowly during the first 15-20 minutes of cold exposure. Similar to autopsy results, no correlation was detected between ACTH levels and corticosterone secretion, either in mono-culture or co-culture experiments. These results suggested that ACTH-independent cortisol secretion may function as a stress response during cold exposure.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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