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Published on: May 4, 2020
Pulmonary targeting of sustained release formulation of budesonide in neonatal rats
Vikram Arya1, Intira Coowanitwong, Boglarka Brugos
1Department of Pharmaceutics, College of Pharmacy, University of Florida, Gainesville, FL 32610, USA.
Insights
Developing sustained-release inhaled corticosteroids for premature infants may improve treatment for chronic lung disease (CLD). This study shows coated budesonide offers sustained lung receptor occupancy with reduced systemic exposure in neonatal rats.
Area of Science:
- Pharmacology and Drug Delivery
- Neonatal Medicine
- Pulmonary Medicine
Background:
- Systemic corticosteroids are standard for treating chronic lung disease (CLD) in premature infants, often administered orally.
- Inhaled corticosteroids are recognized but oral routes persist, leading to potential systemic side effects.
- A need exists for improved delivery systems to enhance therapeutic benefit and minimize risks in neonates.
Purpose of the Study:
- To evaluate the benefit/risk ratio of pulmonary sustained-release inhaled corticosteroids compared to traditional therapy.
- To develop and characterize budesonide particles coated with polylactic acid (PLA) for slow drug release.
- To assess lung, liver, and brain receptor occupancy in neonatal rats following intratracheal instillation.
Main Methods:
- Budesonide particles were coated with PLA using pulse laser ablation to create a sustained-release formulation.
- Dissolution behavior and particle size of coated and uncoated budesonide were characterized.
- Ex vivo receptor binding studies in neonatal rats measured drug distribution and occupancy after intratracheal administration.
Main Results:
- PLA-coated budesonide exhibited significantly slower dissolution (4.7 h) compared to uncoated budesonide (1.2 h).
- No significant difference in respirable fraction was observed between coated and uncoated formulations.
- PLA-coated budesonide demonstrated sustained lung receptor occupancy (75.8%) with reduced liver (46.6%) and brain (29%) occupancy compared to uncoated budesonide.
Conclusions:
- Sustained-release PLA-coated budesonide in neonatal rats leads to prolonged lung receptor occupancy and lower systemic exposure.
- Pulmonary-targeted delivery systems for inhaled corticosteroids offer potential for enhanced local effects and reduced systemic toxicity.
- Development of such systems is crucial for improving CLD treatment in premature infants.
Abstract:
Systemic corticosteroids are widely used for the treatment/prevention of chronic lung disease (CLD) in premature infants. The use of the inhalation route for delivering corticosteroids has been widely recognized, however so far pre-term babies continue to be treated with oral glucocorticoids, such as dexamethasone. We hypothesize that the pulmonary administration of sustained release formulations of inhaled corticosteroids to pre-term infants will result in a higher benefit/risk ratio as compared to traditional inhalation therapy. To achieve a slow release formulation budesonide particles were coated with a very thin film of polylactic acid using a pulse laser ablation technique. Coated material was characterized with respect to the dissolution behavior and particle size. Ex vivo receptor binding studies were performed to monitor the cumulative lung, liver and brain receptor occupancies after adminstration in neonatal (10-11 days old) rats after intratracheal instillation of either uncoated budesonide or poly (l-lactic acid) (PLA) coated budesonide. The mean dissolution timed for the uncoated and the polymer coated formulations were 1.2 +/- 0.5 and 4.7 +/- 0.1 h, respectively (p < 0.05). No significant differences in the respirable fraction were found between coated and uncoated formulation (p>0.05). The average receptor occupancies in the lung, liver and brain after administration of uncoated budesonide were 58.4 +/- 12.9, 56.4 +/- 6.8 and 38.3 +/- 6.7%, respectively. However, after administration of PLA coated budesonide, the average AUC estimates in the lung, liver and brain were 75.8 +/- 3.7%, 46.6 +/- 14.5 and 29 +/- 7, respectively. The results from our study suggest sustained receptor occupancy in the lungs of neonatal rats after administration of PLA coated budesonide results in lower systemic exposure (as indicated by low liver receptor occupancy). The data strongly underscore the urgent need to develop sustained release pulmonary-targeted delivery systems of corticosteroids for the treatment of CLD in pre-term infants. The administration of inhaled corticosteroids using targeted drug-delivery systems will potentially result in higher local effects and a reduction in systemic exposure.
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