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Published on: August 7, 2017
Type 2 immune polarization is associated with cardiopulmonary disease in preterm infants
Jason C Lao1,2, Christine B Bui1,2, Merrin A Pang1,2
1Department of Paediatrics, Monash University, Melbourne, Victoria 3168, Australia.
Insights
Type 2 immune polarization in infants is linked to cardiopulmonary illness. Blocking type 2 mediators like IL-4 ameliorated lung inflammation and protected vascular integrity in neonatal disease models.
Area of Science:
- Developmental immunology
- Neonatal cardiopulmonary disease
- Immune system maturation
Background:
- Postnatal immune system development and its role in infant diseases like bronchopulmonary dysplasia (BPD) are not well understood.
- BPD and associated pulmonary hypertension are significant inflammatory cardiopulmonary diseases in infants, leading to high mortality, morbidity, and healthcare costs.
Purpose of the Study:
- To investigate the role of immune polarization in early life cardiopulmonary diseases.
- To identify potential therapeutic targets for mitigating inflammation in neonatal lung conditions.
Main Methods:
- Longitudinal blood sample analysis from preterm infants, healthy term infants, and adults.
- Flow cytometry and single-cell transcriptomics on mouse lung tissue.
- In vivo studies using murine models of neonatal cardiopulmonary disease to test blockade of type 2 immune mediators.
Main Results:
- Strong association observed between type 2 immune polarization in T cells and cardiopulmonary illness in infants (OR up to 24).
- Maternal magnesium sulfate, delayed hepatitis B vaccination, and fetal chorioamnionitis severity influenced type 2 polarization.
- Blocking type 2 mediators (IL-4, IL-5, IL-13, STAT6) in mice ameliorated lung inflammation, protected alveolar and vascular integrity, and prevented capillary loss.
Conclusions:
- Type 2 immune polarization is a key factor in infant cardiopulmonary diseases.
- Targeting type 2 cytokines and STAT6 offers potential therapeutic strategies for neonatal inflammatory lung diseases.
- This research advances understanding of developmental immunology and its clinical implications for infants.
Abstract:
Postnatal maturation of the immune system is poorly understood, as is its impact on illnesses afflicting term or preterm infants, such as bronchopulmonary dysplasia (BPD) and BPD-associated pulmonary hypertension. These are both cardiopulmonary inflammatory diseases that cause substantial mortality and morbidity with high treatment costs. Here, we characterized blood samples collected from 51 preterm infants longitudinally at five time points, 20 healthy term infants at birth and age 3 to 16 weeks, and 5 healthy adults. We observed strong associations between type 2 immune polarization in circulating CD3+CD4+ T cells and cardiopulmonary illness, with odds ratios up to 24. Maternal magnesium sulfate therapy, delayed hepatitis B vaccination, and increasing fetal, but not maternal, chorioamnionitis severity were associated with attenuated type 2 polarization. Blocking type 2 mediators such as interleukin-4 (IL-4), IL-5, IL-13, or signal transducer and activator of transcription 6 (STAT6) in murine neonatal cardiopulmonary disease in vivo prevented changes in cell type composition, increases in IL-1β and IL-13, and losses of pulmonary capillaries, but not gains in larger vessels. Thereby, type 2 blockade ameliorated lung inflammation, protected alveolar and vascular integrity, and confirmed the pathological impact of type 2 cytokines and STAT6. In-depth flow cytometry and single-cell transcriptomics of mouse lungs further revealed complex associations between immune polarization and cardiopulmonary disease. Thus, this work advances knowledge on developmental immunology and its impact on early life disease and identifies multiple therapeutic approaches that may relieve inflammation-driven suffering in the youngest patients.
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