Elevated third trimester corticosteroid levels are associated with fewer offspring infections
Nicole Prince1, Rachel S Kelly1, Su H Chu1
1Channing Division of Network Medicine, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, 181 Longwood Avenue, Boston, MA, 02115, USA.
Insights
Maternal corticosteroid levels during pregnancy are linked to fewer respiratory infections in offspring. Higher levels in late pregnancy correlate with better infant lung function and reduced infection risk, suggesting potential interventions.
Area of Science:
- Perinatal Medicine
- Respiratory Health
- Endocrinology
Background:
- Recurrent respiratory infections in early life increase chronic disease risk.
- Maternal factors during pregnancy influence offspring susceptibility to infections.
- Steroids' role in respiratory health and infection proneness requires characterization.
Purpose of the Study:
- To investigate the relationship between maternal steroid levels during pregnancy and offspring respiratory infection proneness.
- To explore associations between maternal steroids and related respiratory outcomes like asthma and lung function.
Main Methods:
- Utilized two pre-birth cohorts (VDAART and COPSAC) with 1503 mother-offspring pairs.
- Measured 16 maternal androgen and corticosteroid metabolites in plasma across trimesters using ultrahigh-performance-liquid-chromatography/mass-spectrometry.
- Employed adjusted Poisson regression models to assess associations with offspring respiratory infection incidence and lung function.
Main Results:
- Higher maternal plasma corticosteroid levels in the third trimester were significantly associated with lower offspring respiratory infection incidence (P < 0.002).
- Elevated third-trimester corticosteroids correlated with improved offspring lung function metrics (P = 0.020-0.036).
- Maternal androgens showed inconsistent associations with increased offspring infections and poorer lung function.
Conclusions:
- Increased maternal corticosteroid levels in late pregnancy are linked to reduced offspring respiratory infections and enhanced lung function.
- These findings suggest maternal corticosteroid supplementation in late pregnancy as a potential intervention strategy.
- Targeting maternal steroid profiles may mitigate early-life respiratory infection susceptibility.
Abstract:
Respiratory infections are a leading cause of morbidity and mortality in early life, and recurrent infections increase the risk of developing chronic diseases. The maternal environment during pregnancy can impact offspring health, but the factors leading to increased infection proneness have not been well characterized during this period. Steroids have been implicated in respiratory health outcomes and may similarly influence infection susceptibility. Our objective was to describe relationships between maternal steroid levels and offspring infection proneness. Using adjusted Poisson regression models, we evaluated associations between sixteen androgenic and corticosteroid metabolites during pregnancy and offspring respiratory infection incidence across two pre-birth cohorts (N = 774 in VDAART and N = 729 in COPSAC). Steroid metabolites were measured in plasma samples from pregnant mothers across all trimesters of pregnancy by ultrahigh-performance-liquid-chromatography/mass-spectrometry. We conducted further inquiry into associations of steroids with related respiratory outcomes: asthma and lung function spirometry. Higher plasma corticosteroid levels in the third trimester of pregnancy were associated with lower incidence of offspring respiratory infections (P = 4.45 × 10-7 to 0.002) and improved lung function metrics (P = 0.020-0.036). Elevated maternal androgens were generally associated with increased offspring respiratory infections and worse lung function, with some associations demonstrating nominal significance at P < 0.05, but these trends were inconsistent across individual androgens. Increased maternal plasma corticosteroid levels in the late second and third trimesters were associated with lower infections and better lung function in offspring, which may represent a potential avenue for intervention through corticosteroid supplementation in late pregnancy to reduce offspring respiratory infection susceptibility in early life.Clinical Trial Registry information: VDAART and COPSAC were originally conducted as clinical trials; VDAART: ClinicalTrials.gov identifier NCT00920621; COPSAC: ClinicalTrials.gov identifier NCT00798226.
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