Guo Changning, Doub William H
Division of Pharmaceutical Analysis, U. S. Food and Drug Administration, 1114 Market Street, Room 1002, St. Louis, Missouri 63101, USA.
J Pharm Sci. 2006 Sep;95(9):2029-40. doi: 10.1002/jps.20678.
Nasal spray drug products are normally characterized via measurement of shot weight, spray pattern, plume geometry, and droplet size distribution (DSD). In this project, the actuation parameters, such as stroke length, actuation velocity, and actuation acceleration, were investigated to ascertain how they affect nasal spray characteristics. Pfeiffer nasal spray pump units filled with water were used in the study. Actuation parameters were adjusted using an electronic automated actuation system, SprayVIEW NSx. Spray pattern and plume geometry measurements were carried out using a high speed optical spray characterization system, SprayVIEW NSP, and DSD analysis was performed using a Malvern 2600 laser diffraction system. Our results show that different actuation parameters affect the nasal spray characteristics in different ways and to different degrees. Among all the actuation parameters, stroke length and actuation velocity have significant effects on the nasal spray characteristics, while the other actuation parameters have little, if any, effect. Compared to spray pattern, plume geometry and DSD, shot weight provides very little characterization information. The findings from this work suggest that, for in vitro bioavailability (BA) and bioequivalence (BE) studies of nasal spray products, the actuation parameters, stroke length, and velocity must be carefully selected. Spray pattern, plume geometry, and DSD appear to provide critical data for assessment of nasal pump performance.
鼻喷雾药品通常通过测量喷雾重量、喷雾模式、羽流几何形状和液滴尺寸分布(DSD)来表征。在本项目中,对诸如行程长度、驱动速度和驱动加速度等驱动参数进行了研究,以确定它们如何影响鼻喷雾特性。研究中使用了装满水的Pfeiffer鼻喷雾泵装置。使用电子自动驱动系统SprayVIEW NSx来调整驱动参数。使用高速光学喷雾表征系统SprayVIEW NSP进行喷雾模式和羽流几何形状测量,并使用马尔文2600激光衍射系统进行DSD分析。我们的结果表明,不同的驱动参数以不同的方式和不同的程度影响鼻喷雾特性。在所有驱动参数中,行程长度和驱动速度对鼻喷雾特性有显著影响,而其他驱动参数即使有影响也很小。与喷雾模式、羽流几何形状和DSD相比,喷雾重量提供的表征信息非常少。这项工作的研究结果表明,对于鼻喷雾产品的体外生物利用度(BA)和生物等效性(BE)研究,必须仔细选择驱动参数、行程长度和速度。喷雾模式、羽流几何形状和DSD似乎为评估鼻泵性能提供了关键数据。