Related Experiment Video
Updated: Feb 2, 2026

The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo
Published on: August 2, 2017
Excess Hydrocortisone Hampers Placental Nutrient Uptake Disrupting Cellular Metabolism
Rosa María Mateos1,2, Gema Jiménez2, Carmen Álvarez-Gil3
1Department of Biomedicine, Biotechnology and Public Health, University of Cádiz, Cádiz, Spain.
Insights
Excess glucocorticoids (GCs) impair placental glucose and lipid metabolism, potentially causing fetal growth restriction. This study investigated hydrocortisone
Area of Science:
- Endocrinology
- Developmental Biology
- Metabolic Research
Background:
- Low birth weight is linked to long-term health issues.
- Gestational excess glucocorticoids (GCs) cause fetal growth retardation.
- The placenta regulates fetal nutrient supply and growth.
Purpose of the Study:
- To investigate the impact of excess hydrocortisone on placental glucose and lipid metabolism.
- To understand the biological basis of GC-induced fetal growth restriction.
Main Methods:
- Human term placental explants were cultured with varying hydrocortisone concentrations.
- Isotopic techniques quantified glucose and lipid uptake and fatty acid metabolism.
- GLUT1 expression, cell viability, and caspase activity were assessed.
Main Results:
- Excess hydrocortisone impaired placental glucose uptake.
- Lipoprotein lipase activity and fatty acid oxidation/esterification were inhibited.
- No significant cell death was observed under experimental conditions.
Conclusions:
- Glucocorticoid overexposure dysregulates placental lipid and glucose metabolism.
- This dysfunction may reduce nutrient supply to the fetus, leading to growth retardation.
- Findings link GC exposure to fetal growth restriction and metabolic programming.
Abstract:
Low birth weight increases neonatal morbidity and mortality, and surviving infants have increased risk of metabolic and cardiovascular disturbances later in life, as well as other neurological, psychiatric, and immune complications. A gestational excess of glucocorticoids (GCs) is a well-known cause for fetal growth retardation, but the biological basis for this association remains elusive. Placental growth is closely related to fetal growth. The placenta is the main regulator of nutrient transport to the fetus, resulting from the difference between placental nutrient uptake and the placenta's own metabolism. The aim of this study was to analyze how excess hydrocortisone affects placental glucose and lipid metabolism. Human placenta explants from term physiological pregnancies were cultured for 18 hours under different hydrocortisone concentrations (2.75, 5.5, and 55 mM; 1, 2, and 20 mg/ml). Placental glucose and lipid uptake and the metabolic partitioning of fatty acids were quantified by isotopic techniques, and expression of specific glucose transporter GLUT1 was quantified by western blot. Cell viability was assessed by MTT, immunohistochemistry and caspase activity. We found that excess hydrocortisone impairs glucose uptake and lipoprotein lipase (LPL) activity, coincident with a GC-dose dependent inhibition of fatty acid oxidation and esterification. None of the experimental conditions showed an increased cell death. In conclusion, our results show that GC overexposure exerts a dysfunctional effect on lipid transport and metabolism and glucose uptake in human placental explants. These findings could well be directly related to a reduced placental growth and possibly to a reduced supply of nutrients to the fetus and the consequent fetal growth retardation and metabolic programming.
Related Concept Videos
Absorption of Nutrients
Enterocytes, which are specialized polar epithelial cells, line the mucosa of the small intestinal walls. These cells...
Gonadal and Placental Hormones
In males, testosterone is the primary gonadal androgen. It plays a central role in the maturation of male reproductive organs — the penis and testes. Additionally, testosterone is instrumental in the development of secondary sexual characteristics — a deep voice as well as facial and pubic hair...
What is Metabolism?
Excess Pressure Inside a Drop and a Bubble
Carbohydrate Metabolism
Starch accounts for approximately 60% of the carbohydrates consumed by humans. Since amylase enzymes cannot function in the stomach's acidic environment, starch can only be digested in the mouth and small intestine. Simple sugars are found naturally in milk and fruits in...
Drugs Affecting Neurotransmitter Release or Uptake

