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Published on: May 4, 2020
Ciclesonide exhibits lung-protective effects in neonatal rats exposed to intra-amniotic enterotoxin
Victoria Mielgo1, Elena Gastiasoro2, Chiara Catozzi3
1Animal Research Unit, Biocruces-Bizkaia Health Research Institute, Barakaldo, Spain.
Insights
Postnatal ciclesonide treatment improved lung function and structure in a rat model of bronchopulmonary dysplasia (BPD). This new glucocorticoid prevented pulmonary hypertension without harming brain development, offering a potential BPD prevention strategy.
Area of Science:
- Neonatal Medicine
- Pulmonology
- Pharmacology
Background:
- Bronchopulmonary dysplasia (BPD) is a prevalent chronic lung disease in newborns, particularly premature infants.
- Current BPD treatments focus on lung-protective ventilation, surfactant therapy, and corticosteroids, with no specific cure.
- Developing effective preventative strategies for BPD remains a critical challenge in neonatal care.
Purpose of the Study:
- To evaluate the efficacy of postnatal ciclesonide in a rat model of chorioamnionitis-induced BPD.
- To assess ciclesonide's impact on lung structure and pulmonary hypertension.
- To determine if ciclesonide has adverse effects on developing brain histology.
Main Methods:
- Intra-amniotic endotoxin (ETX) or saline was administered to pregnant rats.
- Pups were delivered via cesarean section and received postnatal ciclesonide (0.5 mg/kg) or saline for five days.
- Lung function, lung structure, pulmonary hypertension, and brain histology were assessed on postnatal day 14.
Main Results:
- ETX-exposed pups without treatment exhibited impaired lung compliance, disrupted lung structure, and pulmonary hypertension.
- Postnatal ciclesonide administration significantly improved lung compliance, alveolarization, and lung vascular growth.
- Ciclesonide treatment prevented pulmonary hypertension without adverse effects on evaluated brain histology.
Conclusions:
- Postnatal ciclesonide administration effectively preserved lung function and structure in an antenatal ETX-induced BPD rat model.
- Ciclesonide prevented pulmonary hypertension without compromising brain development.
- These findings suggest ciclesonide as a potential novel strategy for BPD prevention, warranting further long-term investigation.
Introduction:
Despite the advances in perinatal care, bronchopulmonary dysplasia (BPD) continues to be a highly prevalent chronic lung disease that affects newborns, especially affecting premature newborns. There is no specific cure for BPD, and treatments aimed at reducing the risk of developing BPD focus mainly on lung-protective ventilation strategies, surfactant therapy, and/or corticosteroid administration. Our objective was to evaluate whether systemic postnatal administration of a new glucocorticoid, ciclesonide, can attenuate the alteration of lung structure and pulmonary hypertension in a rat model of chorioamnionitis-induced BPD, with minimal adverse effects on the developing brain.
Methods:
Endotoxin (ETX) or saline was administered to pregnant rats by intra-amniotic (i.a.) injection on day 20 of pregnancy, and pups were delivered by cesarean section on day 22. Ciclesonide (0.5 mg/kg) was administered postnatally for five consecutive days to pups previously exposed to i.a. ETX. On postnatal day 14, we assessed lung function (compliance), lung structure (radial alveolar count, mean linear intercept, pulmonary vessel density), pulmonary hypertension, and brain histology (edema, inflammation, apoptosis, hemorrhage, and infarction).
Result:
On postnatal day 14, the effects of i.a. ETX administration were evident in neonatal rats not receiving treatment; these animals showed impaired lung compliance, disrupted lung structure, and developing pulmonary hypertension compared to those receiving i.a. saline. Postnatal administration of ciclesonide for 5 days was associated with significantly better outcomes in terms of lung compliance, alveolarization, lung vascular growth, and pulmonary hypertension, without affecting the brain histological parameters evaluated.
Conclusion:
Postnatal ciclesonide administration preserved lung function and structure and prevented pulmonary hypertension in a BPD model induced by antenatal i.a. ETX administration, without causing any adverse effects on brain development. These findings suggest that the new glucocorticoid, ciclesonide, may provide a novel strategy for the prevention of BPD; however, more long-term studies are required.
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