Evaluation of droplet velocity and size from nasal spray devices using phase Doppler anemometry (PDA).

To determine aerosol deposition during the inhalation drug delivery, it is important to understand the combination of velocity and droplet size together. In this study, phase Doppler anemometry (PDA) was used to simultaneously characterize the aerosol velocity and droplet size distribution (DSD) of three nasal spray pumps filled with water. Thirteen sampling positions were located in the horizontal cross-sectional area of the nasal spray plumes at a distance of 3cm from the pump orifice. The results showed droplet velocities near the center of the spray plume were higher and more consistent than those near the edge. The pumps examined showed significant differences in their aerosol velocity at the center of the spray plume, which suggest that this metric might be used as a discriminating parameter for in vitro testing of nasal sprays. Droplet size measurements performed using PDA were compared with results from laser light scattering measurements. The ability of PDA to provide simultaneous measurements of aerosol velocity and size makes it a powerful tool for the detailed investigation of nasal spray plume characteristics.

[1]  Evaluation of impaction force of nasal sprays and metered-dose inhalers using the Texture Analyser. , 2009, Journal of pharmaceutical sciences.

[2]  Dieter Hochrainer,et al.  Comparison of the aerosol velocity and spray duration of Respimat Soft Mist inhaler and pressurized metered dose inhalers. , 2005, Journal of aerosol medicine : the official journal of the International Society for Aerosols in Medicine.

[3]  Changning Guo,et al.  Assessment of the influence factors on in vitro testing of nasal sprays using Box-Behnken experimental design. , 2008, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.

[4]  W. E. Ranz,et al.  Impaction of Dust and Smoke Particles on Surface and Body Collectors. , 1952 .

[5]  Jeffry D Schroeter,et al.  Characterization of deposition from nasal spray devices using a computational fluid dynamics model of the human nasal passages. , 2007, Journal of aerosol medicine : the official journal of the International Society for Aerosols in Medicine.

[6]  R. Dhand Aerosol plumes: slow and steady wins the race. , 2005, Journal of aerosol medicine : the official journal of the International Society for Aerosols in Medicine.

[7]  M. Balakrishnan,et al.  High speed photographic analysis of aerosols produced by metered dose inhalers , 1988, The Journal of pharmacy and pharmacology.