Fetal dexamethasone exposure interferes with establishment of cardiac noradrenergic innervation and sympathetic activity
- 1 February 1993
- journal article
- developmental pharmacology-and-toxicology
- Published by Wiley in Teratology
- Vol. 47 (2) , 109-117
- https://doi.org/10.1002/tera.1420470203
Abstract
Endogenous glucocorticoids provide natural differentiation signals for adrenergic neurons, and exposure to high exogenous steroid levels thus disrupts the timing of neuronal maturation. In the current study, pregnant rats were given 0.05, 0.2, or 0.8 mg/kg dexamethasone on gestational days 17, 18, and 19, and the effects on development of cardiac sympathetic function were assessed postnatally in the offspring. Dexamethasone produced a dose‐dependent retardation of body and heart weight gains; at the highest dose, heart weight deficits were smaller than those for body weight, producing a relative cardiomegaly. The weight effects were accompanied by abnormalities of noradrenergic innervation, as assessed with measurements of norepinephrine levels and turnover. Norepinephrine levels were significantly reduced at all doses of dexamethasone, with the magnitude of effect exceeding that on heart or body weights; thus the levels were reduced even when corrected for tissue weight (ng norepinephrine/g heart weight). Norepinephrine turnover, a measure of neuronal impulse activity, showed delayed development at the lowest dose of dexamethasone and displayed profound suppression throughout development at the higher doses. Adverse effects of dexamethasone on norepinephrine turnover were still apparent in young adulthood, despite the recovery of weight variables to within 15% of normal values. In light of the release of steroids during maternal stress and the use of steroids in the therapy of neonatal respiratory distress, developing adrenergic neurons are likely to be targeted for adverse effects even when standard growth indices have normalized.Keywords
This publication has 32 references indexed in Scilit:
- Glucocorticoids and the Development of Neuronal Function: Effects of Prenatal Dexamethasone Exposure on Central Noradrenergic ActivityNeonatology, 1992
- Glucocorticoids regulate the ontogenetic transition of adrenergic receptor subtypes in rat liverLife Sciences, 1991
- Fetal dexamethasone exposure impairs cellular development in neonatal rat heart and kidney: Effects on DNA and protein in whole tissuesTeratology, 1991
- Control of Adenylate Cyclase Activity in Developing Rat Heart and Liver: Effects of Prenatal Exposure to Terbutaline or DexamethasoneNeonatology, 1991
- Do glucocorticoids induce adrenergic differentiation in adrenal cells of neural crest origin?Developmental Brain Research, 1989
- Effects of Dexamethasone in Hypoxic-Ischemic Brain Injury in the Neonatal RatNeonatology, 1984
- Effect of neonatal hydrocortisone treatment on brain monoamines in developing rats.The Japanese Journal of Pharmacology, 1980
- Neonatal corticosteroid permanently alters brain activity of epinephrine-synthesizing enzyme in stressed ratsBrain Research, 1979
- EFFECT OF DEXAMETHASONE ON PHENYLETHANOLAMINE N‐METHYLTRANSFERASE IN CHROMAFFIN TISSUE OF THE NEONATAL RATJournal of Neurochemistry, 1973