Effect of USP Induction Ports, Glass Sampling Apparatus, and Inhaler Device Resistance on Aerodynamic Patterns of Fluticasone Propionate-Loaded Engineered Mannitol Microparticles

AAPS PharmSciTech. 2019 May 23;20(5):197. doi: 10.1208/s12249-019-1409-9.

Abstract

The present investigation is to study the effect of two different induction ports (IP), i.e., USP IP and USP-modified IP equipped with andersen cascade impactor on in vitro aerodynamic performance along with the impact of USP-modified glass sampling apparatus on delivered dose uniformity of fluticasone propionate (FP) dry powder inhaler (DPI). FP DPI was fabricated by spray drying technique using engineered mannitol microparticles (EMP) with different force controlling agents, i.e., leucine and magnesium stearate. Additionally, commercially available two DPI inhaler devices namely Handihaler® and Breezhaler® were used to aerosolize the FP blends. Spherical smooth surface of EMP showed good powder flow properties and acceptable percentage content uniformity (> 95%). Amounts of FP deposited in cascade assembly using USP-modified IP with the Breezhaler® device was significantly higher (1.32-fold) as compared with the Handihaler® device. Moreover, USP-modified IP showed better deposition as compared with USP IP. Additionally, both inhaler devices showed a satisfactory delivered dose (> 105%) for FP using modified glass sampling apparatus at a flow rate of 60 L/min for 2 s. It was interesting to note that not only formulation properties but also IP geometry and device resistance have significant impact on DPI deposition pattern. This study is a first detailed account of aerodynamic performance of FP using USP-modified IP and USP-modified glass sampling apparatus. Thus, it can be of potential importance for both the academic and industry perspective.

Keywords: delivered dose uniformity; induction port; inhaler device resistance; mannitol and fluticasone propionate.

MeSH terms

  • Administration, Inhalation
  • Bronchodilator Agents / chemistry*
  • Bronchodilator Agents / pharmacokinetics
  • Chemical Engineering / instrumentation
  • Chemical Engineering / methods
  • Drug Compounding
  • Dry Powder Inhalers / instrumentation*
  • Dry Powder Inhalers / methods
  • Equipment Design / instrumentation
  • Equipment Design / methods
  • Fluticasone / chemistry*
  • Fluticasone / pharmacokinetics
  • Glass / chemistry*
  • Mannitol / chemistry*
  • Mannitol / pharmacokinetics
  • Microspheres*
  • Particle Size

Substances

  • Bronchodilator Agents
  • Mannitol
  • Fluticasone