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Updated: Mar 23, 2026

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
Pulmonary Morbidity in Infancy after Exposure to Chorioamnionitis in Late Preterm Infants
Karen M McDowell1, Alan H Jobe2,3, Matthew Fenchel1,4
11 Division of Pulmonary Medicine.
Insights
Fetal inflammation from chorioamnionitis is linked to infant respiratory issues, even without immediate lung function changes. Severe inflammation and elevated IL-6 in cord blood indicate higher risks for pulmonary problems in preterm infants.
Area of Science:
- Neonatal Medicine
- Pediatric Pulmonology
- Obstetrics
Background:
- Chorioamnionitis is a significant risk factor for preterm birth.
- The long-term effects of fetal inflammation on infant respiratory health remain understudied.
Purpose of the Study:
- To investigate the association between fetal exposure to inflammation (chorioamnionitis) and pulmonary outcomes in moderate to late preterm infants at 6-12 months of age.
Main Methods:
- Prospective cohort study of 184 infants born between 32-36 weeks gestational age.
- Chorioamnionitis diagnosed via placental and umbilical cord histology.
- Cord blood cytokine analysis (IL-6) and infant pulmonary function testing (PFTs) at 6-12 months.
Main Results:
- Chorioamnionitis occurred in 25% of participants.
- No significant differences in PFTs between infants with and without chorioamnionitis.
- Chorioamnionitis exposure independently associated with wheeze (OR 2.08) and respiratory visits (OR 3.18).
- Severe chorioamnionitis linked to higher IL-6 and increased pulmonary morbidity.
- Elevated IL-6 associated with more respiratory problems (OR 3.23).
Conclusions:
- Histologically confirmed chorioamnionitis and elevated cord blood IL-6 are associated with infant respiratory morbidity in moderate/late preterm infants.
- These associations exist despite no significant changes in infant PFT measurements.
- Black infants and male infants showed poorer pulmonary outcomes compared to white and female infants, respectively.
Rationale:
Chorioamnionitis is an important cause of preterm birth, but its impact on postnatal outcomes is understudied.
Objectives:
To evaluate whether fetal exposure to inflammation is associated with adverse pulmonary outcomes at 6 to 12 months' chronological age in infants born moderate to late preterm.
Methods:
Infants born between 32 and 36 weeks' gestational age were prospectively recruited (N = 184). Chorioamnionitis was diagnosed by placenta and umbilical cord histology. Select cytokines were measured in samples of cord blood. Validated pulmonary questionnaires were administered (n = 184), and infant pulmonary function testing was performed (n = 69) between 6 and 12 months' chronological age by the raised volume rapid thoracoabdominal compression technique.
Measurements And Main Results:
A total of 25% of participants had chorioamnionitis. Although infant pulmonary function testing variables were lower in infants born preterm compared with historical normative data for term infants, there were no differences between infants with chorioamnionitis (n = 20) and those without (n = 49). Boys and black infants had lower infant pulmonary function testing measurements than girls and white infants, respectively. Chorioamnionitis exposure was associated independently with wheeze (odds ratio [OR], 2.08) and respiratory-related physician visits (OR, 3.18) in the first year of life. Infants exposed to severe chorioamnionitis had increased levels of cord blood IL-6 and greater pulmonary morbidity at age 6 to 12 months than those exposed to mild chorioamnionitis. Elevated IL-6 was associated with significantly more respiratory problems (OR, 3.23).
Conclusions:
In infants born moderate or late preterm, elevated cord blood IL-6 and exposure to histologically identified chorioamnionitis was associated with respiratory morbidity during infancy without significant changes in infant pulmonary function testing measurements. Black compared with white and boy compared with girl infants had lower infant pulmonary function testing measurements and worse pulmonary outcomes.
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