Automated Author Profile

J., Coote

Current S-Index

1.7

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.8

Average Dataset Index per dataset

Total Datasets

2

Total datasets for this author

Average FAIR Score

84.6%

Average FAIR Score per dataset

Total Citations

2

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Supplementary Material for: A novel relationship between Corticotropin-releasing hormone level and high-altitude hypoxia in human and rat model

Background: Acute mountain sickness(AMS) strikes people who travel too quickly to high altitude, outstripping their ability to acclimatize. Individual susceptibility to AMS remains unpredictable. The aim of study was to investigate the neuroendocrine mechanisms regulation of corticotrophin releasing hormone(CRH) and associated with AMS. Methods: Volunteers performed exercise by cycling or by running, and the other was assigned to ascend from low to high altitude. CRH and cortisol levels were tested. AMS questionnaires were answered by volunteers. Rats were exposed in a hypobaric chamber for altitude hypoxia. CRH, Crhr1mRNA, and corticosterone levels were measured. LDH and O2 saturation were evaluated. Results: In rats, hypobaric hypoxia resulted in increased CRH release and mRNA expression in the paraventricular nucleus(PVN). Hypobaric hypoxia also up-regulated Crhr1mRNA in the pituitary and PVN in a hypoxia exposure-dependent manner, along with activation of apoptotic gene mRNA and neuronal apoptosis in cortex. These effects were associated with activation of CRHR1. Hypoxia-enhanced plasma CRH levels were negatively correlated with brain CRH level, but positively with plasma corticosterone in rats. In humans, exercise at low altitude increased CRH and cortisol levels in both plasma and saliva. The increased levels in plasma correlated with increased salivary CRH. Significantly, lowlanders with high plasma CRH at low altitude developed AMS after rapid ascent to the Tibet plateau. At high altitude, lowlanders with high AMS scores had high salivary and plasma CRH levels.Conclusions: Hypobaric hypoxia is associated with high plasma CRH in rats. In human strong activation of CRH and CRHR1 is positively linked to AMS. CRH levels in saliva or plasma appear to predict individual responses to hypoxia.

Authors

  • karger, figshare admin ;
  • F.P., Kong ;
  • G., Xu ;
  • P.P., Wang ;
  • S.J., Chen ;
  • K., Hao ;
  • J., Chen ;
  • J., Lin ;
  • J., Wang ;
  • J., Coote ;
  • N.C., Spitzer ;
  • J.Z., Du ;
  • Y., Zhao ;
  • Y.Q., Gao ;
  • X.Q., Chen
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.304882372025

Supplementary Material for: A novel relationship between Corticotropin-releasing hormone level and high-altitude hypoxia in human and rat model

Background: Acute mountain sickness(AMS) strikes people who travel too quickly to high altitude, outstripping their ability to acclimatize. Individual susceptibility to AMS remains unpredictable. The aim of study was to investigate the neuroendocrine mechanisms regulation of corticotrophin releasing hormone(CRH) and associated with AMS. Methods: Volunteers performed exercise by cycling or by running, and the other was assigned to ascend from low to high altitude. CRH and cortisol levels were tested. AMS questionnaires were answered by volunteers. Rats were exposed in a hypobaric chamber for altitude hypoxia. CRH, Crhr1mRNA, and corticosterone levels were measured. LDH and O2 saturation were evaluated. Results: In rats, hypobaric hypoxia resulted in increased CRH release and mRNA expression in the paraventricular nucleus(PVN). Hypobaric hypoxia also up-regulated Crhr1mRNA in the pituitary and PVN in a hypoxia exposure-dependent manner, along with activation of apoptotic gene mRNA and neuronal apoptosis in cortex. These effects were associated with activation of CRHR1. Hypoxia-enhanced plasma CRH levels were negatively correlated with brain CRH level, but positively with plasma corticosterone in rats. In humans, exercise at low altitude increased CRH and cortisol levels in both plasma and saliva. The increased levels in plasma correlated with increased salivary CRH. Significantly, lowlanders with high plasma CRH at low altitude developed AMS after rapid ascent to the Tibet plateau. At high altitude, lowlanders with high AMS scores had high salivary and plasma CRH levels.Conclusions: Hypobaric hypoxia is associated with high plasma CRH in rats. In human strong activation of CRH and CRHR1 is positively linked to AMS. CRH levels in saliva or plasma appear to predict individual responses to hypoxia.

Authors

  • karger, figshare admin ;
  • F.P., Kong ;
  • G., Xu ;
  • P.P., Wang ;
  • S.J., Chen ;
  • K., Hao ;
  • J., Chen ;
  • J., Lin ;
  • J., Wang ;
  • J., Coote ;
  • N.C., Spitzer ;
  • J.Z., Du ;
  • Y., Zhao ;
  • Y.Q., Gao ;
  • X.Q., Chen
1 Citation0 Mentions85% FAIR0.8 Dataset Index
10.6084/m9.figshare.30488237.v12025