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Updated: Oct 13, 2025

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Published on: March 12, 2019
Glucocorticoid Receptor Antagonist Alters Corticosterone and Receptor-sensitive mRNAs in the Hypoxic Neonatal Rat
Ashley L Gehrand1, Jonathan Phillips1, Kyle D Welhouse2
1Endocrine Research Laboratory, Aurora St. Luke's Medical Center, Advocate Aurora Research Institute, Milwaukee, WI 53215, USA.
Insights
This study investigated a glucocorticoid receptor (GR) antagonist in preterm rat pups under hypoxia. The antagonist reduced insulin resistance and altered stress hormone responses, suggesting a role in managing prematurity complications.
Area of Science:
- Neonatal physiology and endocrinology
- Pharmacology and drug discovery
Background:
- Hypoxia is a significant stressor in preterm birth, increasing infant morbidity and mortality.
- Glucocorticoids (GCs) are used to improve oxygenation in preterm infants, but their prolonged use is controversial.
Purpose of the Study:
- To evaluate a selective glucocorticoid receptor (GR) antagonist (CORT113176) in a neonatal rat model of human prematurity.
- To assess the effects of CORT113176 on endogenous hormones and endocrine pancreas function under fasting and hypoxia.
Main Methods:
- Neonatal rat pups were pretreated with CORT113176 and exposed to hypoxia or normoxia while fasting.
- Plasma hormones (corticosterone, ACTH, glucose, insulin) and insulin resistance were measured.
- Hepatic, muscle, and adipose tissue gene expression of GR- and insulin receptor-sensitive genes was analyzed.
Main Results:
- CORT113176 augmented corticosterone levels and attenuated hypoxia-induced insulin resistance at postnatal day 2.
- Stress increased hepatic GR-sensitive genes (Gilz, Per1), which was prevented by CORT113176.
- CORT113176 decreased baseline insulin receptor-sensitive genes (Akt2, Irs1, Pik3r1, Srebp1c) at postnatal day 2.
Conclusions:
- CORT113176 can attenuate stress-induced insulin resistance in neonates and affects negative feedback of corticosterone.
- Glucocorticoid receptor (GR) is critical for hepatic responses to stress in hypoxic neonates.
- Gilz and Per1 mRNA expression may serve as biomarkers for evaluating GR antagonism efficacy.
Abstract:
Hypoxia, a common stressor with preterm birth, increases morbidity and mortality associated with prematurity. Glucocorticoids (GCs) are administered to the preterm infant to improve oxygenation; prolonged use of GCs remains controversial. We evaluated a selective glucocorticoid receptor (GR) antagonist (CORT113176) in our neonatal rat model of human prematurity to assess how fasting and hypoxia-induced increases in neonatal corticosterone affects endogenous hormones and endocrine pancreas function. Neonatal rat pups at postnatal day (PD) 2, PD8, and PD15 were pretreated with CORT113176 and, after 60 minutes of separation and fasting, exposed to hypoxia (8% O2) or control (normoxia) for 30 or 60 minutes while fasting was continued. Plasma corticosterone, ACTH, glucose, and insulin were measured and fasting Homeostatic Model Assessment of Insulin Resistance was calculated. Glucocorticoid and insulin receptor-sensitive gene mRNAs were analyzed in liver, muscle, and adipose to evaluate target tissue biomarkers. CORT113176 pretreatment augmented baseline and hypoxia-induced increases in corticosterone and attenuated hypoxia-induced increases in insulin resistance at PD2. Normoxic and hypoxic stress increased the hepatic GR-sensitive gene mRNAs, Gilz and Per1; this was eliminated by pretreatment with CORT113176. CORT113176 pretreatment decreased baseline insulin receptor-sensitive gene mRNAs Akt2, Irs1, Pik3r1, and Srebp1c at PD2. We show that CORT113176 variably augments the stress-induced increases in corticosterone concentrations (attenuation of negative feedback) and that GR is critical for hepatic responses to stress in the hypoxic neonate. We also propose that measurement of Gilz and Per1 mRNA expression may be useful to evaluate the effectiveness of GR antagonism.
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