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Título
Effects of antenatal betamethasone and dexamethasone on the lung expression of vascular endothelial growth factor and alveolarization in newborn rats exposed to acute hypoxia and recovered in normoxia or hyperoxia
Autor(es)
Palabras clave
Antenatal corticosteroids
VEGF
Alveolarization
Lung development
Hyperoxia
Clasificación UNESCO
3201.10 Pediatría
Fecha de publicación
2010
Editor
Karger Publishers
Citación
Remesal, A., San Feliciano, L., Isidoro-García, M., & Ludeña, D. (2010). Effects of antenatal betamethasone and dexamethasone on the lung expression of vascular endothelial growth factor and alveolarization in newborn rats exposed to acute hypoxia and recovered in normoxia or hyperoxia. Neonatology, 98(4), 313-320. https://doi.org/10.1159/000281816
Resumen
[EN]The use of antenatal corticosteroids is widespread and it is
important to know their effect(s) on vascular endothelial
growth factor (VEGF), which plays a crucial role in pulmonary
development. The purpose of this study was to compare pulmonary
VEGF expression in newborn rats that were exposed
to antenatal betamethasone versus dexamethasone under
normoxia, hypoxia and oxidative stress, and to evaluate its
impact on alveolarization. Betamethasone, dexamethasone
or equivalent saline solution (control group) was administered
to pregnant rats. Newborn rats were randomized to
room air, hypoxia followed by hyperoxia, or hypoxia followed
by air. Pulmonary VEGF protein, VEGF mRNA, and alveolarization
were evaluated at 4 days of life. Betamethasone
and dexamethasone were observed to have different
actions on VEGF expression with a correlation with alveolarization.
Antenatal dexamethasone decreased VEGF expression,
and dexamethasone and hyperoxia had an additive effect
on the inhibition of VEGF with a reduction in alveolardevelopment. Betamethasone appeared to have an effect
on the induction of the expression of VEGF, and it seemed to
inhibit the negative action of hyperoxia on VEGF. Moreover,
betamethasone did not produce a decrease in alveolarization.
Our results support the notion that betamethasone
could be better than dexamethasone for antenatal lung maturation.
URI
ISSN
1661-7800
DOI
10.1159/000281816
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