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Published on: June 24, 2020
Antiinflammatory Effects of Budesonide in Human Fetal Lung
Anne Marie Barrette1, Jessica K Roberts2, Cheryl Chapin1
11 Departments of Pediatrics.
Insights
Budesonide is a potent anti-inflammatory drug for preventing bronchopulmonary dysplasia (BPD) in premature infants. It shows greater potency and stability than dexamethasone in human fetal lung tissue.
Area of Science:
- Neonatal Medicine
- Pulmonology
- Pharmacology
Background:
- Infant lung inflammation is a key factor in developing bronchopulmonary dysplasia (BPD).
- Systemic dexamethasone has adverse effects, prompting research into safer alternatives like budesonide.
- Budesonide, delivered via surfactant, is a promising localized treatment for BPD prevention.
Purpose of the Study:
- To evaluate the potency, stability, and anti-inflammatory effects of budesonide in human fetal lung tissue.
- To compare budesonide's efficacy and safety profile against dexamethasone in vitro.
- To assess budesonide's activity and stability when combined with surfactant.
Main Methods:
- Culturing human second-trimester fetal lung explants.
- Treating explants with budesonide or dexamethasone.
- Utilizing microscopy, immunoassays, RNA sequencing, proteomics, and surfactometry to analyze effects.
Main Results:
- Budesonide demonstrated significantly greater potency (fivefold) and faster suppression of inflammatory chemokines (IL-8, CCL2) compared to dexamethasone.
- Gene expression analysis revealed budesonide's broad impact on inflammatory pathways, including regulation of CHI3L1 and IL1RL1.
- Budesonide remained active and stable in the presence of surfactant without compromising its properties, and showed favorable metabolic profile in lung tissue.
Conclusions:
- Budesonide is a potent and stable anti-inflammatory glucocorticoid in human fetal lung explants.
- Topical budesonide-surfactant treatment offers a potentially beneficial strategy for preventing BPD in infants.
- Further clinical investigation is warranted to confirm budesonide's efficacy and safety in preventing BPD.
Abstract:
Lung inflammation in premature infants contributes to the development of bronchopulmonary dysplasia (BPD), a chronic lung disease with long-term sequelae. Pilot studies administering budesonide suspended in surfactant have found reduced BPD without the apparent adverse effects that occur with systemic dexamethasone therapy. Our objective was to determine budesonide potency, stability, and antiinflammatory effects in human fetal lung. We cultured explants of second-trimester fetal lung with budesonide or dexamethasone and used microscopy, immunoassays, RNA sequencing, liquid chromatography/tandem mass spectrometry, and pulsating bubble surfactometry. Budesonide suppressed secreted chemokines IL-8 and CCL2 (MCP-1) within 4 hours, reaching a 90% decrease at 12 hours, which was fully reversed 72 hours after removal of the steroid. Half-maximal effects occurred at 0.04-0.05 nM, representing a fivefold greater potency than for dexamethasone. Budesonide significantly induced 3.6% and repressed 2.8% of 14,500 sequenced mRNAs by 1.6- to 95-fold, including 119 genes that contribute to the glucocorticoid inflammatory transcriptome; some are known targets of nuclear factor-κB. By global proteomics, 22 secreted inflammatory proteins were hormonally regulated. Two glucocorticoid-regulated genes of interest because of their association with lung disease are CHI3L1 and IL1RL1. Budesonide retained activity in the presence of surfactant and did not alter its surface properties. There was some formation of palmitate-budesonide in lung tissue but no detectable metabolism to inactive 16α-hydroxy prednisolone. We concluded that budesonide is a potent and stable antiinflammatory glucocorticoid in human fetal lung in vitro, supporting a beneficial antiinflammatory response to lung-targeted budesonide:surfactant treatment of infants for the prevention of BPD.
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