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Inhaled vitamin A mitigates hyperoxia-induced acute and chronic lung damage in a neonatal rat model of bronchopulmonary dysplasia

支气管肺发育不良 医学 肠内给药 维生素 高氧 肺功能测试 吸入 病理 炎症 内科学 胃肠病学 生物标志物 呼吸道疾病 支气管肺泡灌洗 生理学 囊性纤维化 维生素K2 维生素E 免疫学 加药 内分泌学 气溶胶化
作者
Craig A. Gelfand,Ying Wang,Reiko Sakurai,Jie Liu,C. Yu,Gourav Chandan,S. Madrigal,Lisette Juan,Robert Segal,Virender K. Rehan
出处
期刊:American Journal of Respiratory Cell and Molecular Biology [American Thoracic Society]
标识
DOI:10.1093/ajrcmb/aanag171
摘要

RATIONALE: Prevention of bronchopulmonary dysplasia (BPD) remains a critical unmet need. OBJECTIVES: We continued evaluating aerosolized vitamin A in a neonatal rat hyperoxia-injury model of BPD, testing whether lung-targeted inhalation yields superior outcomes compared to enteral or intramuscular (IM) delivery. METHODS: Rat pups were exposed to continuous 95% hyperoxia for seven days to induce lung damage. Vitamin A was administered from post-natal day (PD) 1-7 by inhalation, enteral or IM dosing. Persisting effectiveness of inhaled vitamin A was examined at PD 21, dwelling in normoxia after all interventions were discontinued at PD 7. MEASUREMENTS AND MAIN RESULTS: Comprehensive analyses include alveolar morphometrics, in vivo pulmonary function testing, assessment of hepatic vitamin A level, and quantitating gene and protein expression of relevant biomarkers of lung maturation, inflammation and damage/repair, employing singlex and multiplexed assays and whole-genome gene expression. CONCLUSIONS: Inhaled vitamin A suppressed hyperoxia-induced lung damage, with key hallmarks of BPD, including lung morphometrics and biomarkers associated with lung damage and inflammation, being effectively indistinguishable from healthy controls at both PD 7 and 21, Natural reparative processes were enhanced, with normal alveolarization and pulmonary function at PD 21. Despite raising hepatic vitamin A levels, enteral dosing was ineffective in restoring alveolar morphology at PD 7. Consistent with previous reporting, IM dosing yielded modest effect at PD 7 but with little evidence of benefit to pulmonary function at PD 21. Observation of dose-dependent effects with aerosolized vitamin A strengthens the evidence of the benefits of lung-targeted delivery, supporting further development of inhaled vitamin A as a BPD preventive strategy.

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