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Pharmaceutical Research · 2026 · Springer
Purpose Direct-to-infant (D2I) transnasal aerosol surfactant therapy (AST) offers a promising non-invasive alternative for treating neonatal respiratory distress syndrome (RDS). However, achieving high lung delivery efficiency with dry powder inhalers (DPIs) requires careful optimization of complex fluid–particle interactions. This study used computational fluid dynamics (CFD) to optimize an Infant Air‑Jet Dry Powder Aerosol D...
Pharmaceutical Research · 2026 · Vol. 43 · Issue 4 · Springer
Purpose Although in vitro studies recommended for establishing bioequivalence of locally acting nasal suspension products provide useful information regarding product performance, currently they are not designed to fully account for variability introduced by patient-specific factors such as administration technique and breathing patterns. This limitation, combined with ethical and practical challenges in conducting pediatric c...
AAPS PharmSciTech · 2026 · Vol. 27 · Issue 3 · Springer
High flow therapy (HFT) delivers heated and humidified gas at flow rates up to 60 L/min to hypoxemic subjects, but is not conducive to simultaneous administration of pharmaceutical aerosols. Aerosol losses occur due to circuit wall impaction, environmental loss and particle growth from high humidity; resulting in poor lung delivery efficiency. This study compares two strategies for delivering dry powder aerosols during 60 L/mi...
Pharmaceutical Research · 2025 · Vol. 42 · Issue 2 · Springer
Purpose To improve the quality of aerosol delivery to infants, the iDP-ADS was advanced to include dual-prong nose-to-lung aerosol administration with a bifurcating interface, consistently monitor lung pressures and control ventilatory parameters with a pressure monitoring and control (PMC) unit, and implement flexible nasal prongs for use across a range of subject sizes. Methods Four bifurcating flow pathways were integrated...
AAPS PharmSciTech · 2025 · Vol. 26 · Issue 1 · Springer
The administration of surfactant aerosol therapy to preterm infants receiving continuous positive airway pressure (CPAP) respiratory support is highly challenging due to small flow passages, relatively high ventilation flow rates, rapid breathing and small inhalation volumes. To overcome these challenges, the objective of this study was to implement a validated computational fluid dynamics (CFD) model and develop an overlay na...
Pharmaceutical Research · 2024 · Vol. 41 · Issue 8 · Springer
Purpose Improving the deep lung delivery of aerosol surfactant therapy (AST) with a dry powder formulation may enable significant reductions in dose while providing improved efficacy. The objective of Part I of this two-part study was to present the development of a new dry powder aerosol synthetic lung surfactant (SLS) product and to characterize performance based on aerosol formation and realistic in vitro airway testing lea...
AAPS PharmSciTech · 2022 · Vol. 23 · Issue 5 · Springer
The objective of this study was to characterize the effects of multiple nasal prong interface configurations on nasal depositional loss of pharmaceutical aerosols in a preterm infant nose-throat (NT) airway model. Benchmark in vitro experiments were performed in which a spray-dried powder formulation was delivered to a new preterm NT model with a positive-pressure infant air-jet dry powder inhaler using single- and dual-prong...