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Updated: Nov 25, 2025

A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
Prenatal inflammation enhances antenatal corticosteroid-induced fetal lung maturation
Augusto F Schmidt1,2, Paranthaman S Kannan1, James Bridges1,2
1Division of Neonatology and Pulmonary Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.
Insights
Antenatal corticosteroids (ACS) improve preterm infant lung function when inflammation is present. However, this may risk abnormal extracellular matrix development, potentially increasing chronic lung disease risk.
Area of Science:
- Neonatal Medicine
- Pulmonology
- Developmental Biology
Background:
- Respiratory complications are a leading cause of death in preterm infants.
- Antenatal corticosteroids (ACS) partially prevent these complications.
- Effects of ACS with chorioamnionitis (intra-amniotic inflammation) are unclear, especially in low-resource settings.
Purpose of the Study:
- To investigate the effects of ACS treatment in the setting of intra-amniotic inflammation on preterm lung development.
- To understand the molecular mechanisms underlying these effects.
Main Methods:
- A rhesus macaque model was used, inducing intra-amniotic inflammation with lipopolysaccharide (LPS).
- Infants received low-dose ACS in conjunction with LPS exposure.
- Lung compliance, surfactant production, and gene expression (RNA sequencing) were analyzed.
Main Results:
- ACS treatment with LPS improved lung compliance and surfactant production compared to LPS or ACS alone.
- RNA sequencing revealed TP53-mediated suppression of proliferation and mesenchymal cell death.
- A mature-like transcriptomic profile was observed, with suppressed collagen and FGF9/FGF10 gene expression.
Conclusions:
- ACS in the context of inflammation may offer an early respiratory advantage to preterm infants.
- This advantage might be linked to abnormal extracellular matrix development, potentially increasing the risk of chronic lung disease.
Abstract:
Respiratory complicˆations are the major cause of morbidity and mortality among preterm infants, which is partially prevented by the administration of antenatal corticosteroids (ACS). Most very preterm infants are exposed to chorioamnionitis, but short- and long-term effects of ACS treatment in this setting are not well defined. In low-resource settings, ACS increased neonatal mortality by perhaps increasing infection. We report that treatment with low-dose ACS in the setting of inflammation induced by intraamniotic lipopolysaccharide (LPS) in rhesus macaques improves lung compliance and increases surfactant production relative to either exposure alone. RNA sequencing shows that these changes are mediated by suppression of proliferation and induction of mesenchymal cellular death via TP53. The combined exposure results in a mature-like transcriptomic profile with inhibition of extracellular matrix development by suppression of collagen genes COL1A1, COL1A2, and COL3A1 and regulators of lung development FGF9 and FGF10. ACS and inflammation also suppressed signature genes associated with proliferative mesenchymal progenitors similar to the term gestation lung. Treatment with ACS in the setting of inflammation may result in early respiratory advantage to preterm infants, but this advantage may come at a risk of abnormal extracellular matrix development, which may be associated with increased risk of chronic lung disease.
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