Although inhalation therapy represents a promising drug delivery route for the treatment of respiratory diseases, the real-time evaluation of lung drug deposition remains an area yet to be fully explored. To evaluate the utility of the photo reflection method (PRM) as a real-time non-invasive monitoring of pulmonary drug delivery, the relationship between particle emission signals measured by the PRM and in vitro inhalation performance was evaluated in this study. Symbicort® Turbuhaler® was used as a model dry powder inhaler. In vitro aerodynamic particle deposition was evaluated using a twin-stage liquid impinger (TSLI). Four different inhalation patterns were defined based on the slope of increased flow rate (4.9–9.8 L/s 2 ) and peak flow rate (30 L/min and 60 L/min). The inhalation flow rate and particle emission profile were measured using an inhalation flow meter and a PRM drug release detector, respectively. The inhalation performance was characterized by output efficiency (OE, %) and stage 2 deposition of TSLI (an index of the deagglomerating efficiency, St2, %). The OE × St2 is defined as the amount delivered to the lungs. The particle emissions generated by four different inhalation patterns were completed within 0.4 s after the start of inhalation, and were observed as a sharper and larger peak under conditions of a higher flow increase rate. These were significantly correlated between the OE or OE × St2 and the photo reflection signal ( p Graphical Abstract
| Journal | AAPS PharmSciTech |
|---|---|
| Publisher | Springer |
| Publication Date | 2024-05-10 |
| Publication Year | 2024 |
| Volume | 25 |
| Issue | 5 |
| Document Type | Journal Article |
| eISSN | 1530-9932 |
| DOI | 10.1208/s12249-024-02825-7 |
| NARA Access Coverage | 2000-01-01~Current |
|---|---|
| Journal Homepage | https://www.springer.com/journal/12249 |
| Publisher Page | Open Publisher Page |