AUTHOR=Bui Christine B. , Kolodziej Magdalena , Lamanna Emma , Elgass Kirstin , Sehgal Arvind , Rudloff Ina , Schwenke Daryl O. , Tsuchimochi Hirotsugu , Kroon Maurice A. G. M. , Cho Steven X. , Maksimenko Anton , Cholewa Marian , Berger Philip J. , Young Morag J. , Bourke Jane E. , Pearson James T. , Nold Marcel F. , Nold-Petry Claudia A. TITLE=Interleukin-1 Receptor Antagonist Protects Newborn Mice Against Pulmonary Hypertension JOURNAL=Frontiers in Immunology VOLUME=10 YEAR=2019 URL=https://www.frontiersin.org/journals/immunology/articles/10.3389/fimmu.2019.01480 DOI=10.3389/fimmu.2019.01480 ISSN=1664-3224 ABSTRACT=
Pulmonary hypertension secondary to bronchopulmonary dysplasia (BPD-PH) represents a major complication of BPD in extremely preterm infants for which there are currently no safe and effective interventions. The abundance of interleukin-1 (IL-1) is strongly correlated with the severity and long-term outcome of BPD infants and we have previously shown that IL-1 receptor antagonist (IL-1Ra) protects against murine BPD; therefore, we hypothesized that IL-1Ra may also be effective against BPD-PH. We employed daily injections of IL-1Ra in a murine model in which BPD/BPD-PH was induced by antenatal LPS and postnatal hyperoxia of 65% O2. Pups reared in hyperoxia for 28 days exhibited a BPD-PH-like disease accompanied by significant changes in pulmonary vascular morphology: micro-CT revealed an 84% reduction in small vessels (4–5 μm diameter) compared to room air controls; this change was prevented by IL-1Ra. Pulmonary vascular resistance, assessed at day 28 of life by echocardiography using the inversely-related surrogate marker time-to-peak-velocity/right ventricular ejection time (TPV/RVET), increased in hyperoxic mice (0.27 compared to 0.32 in air controls), and fell significantly with daily IL-1Ra treatment (0.31). Importantly,