Stein Stephen W, Myrdal Paul B
Early Pharmaceutics and Technology, 3M Drug Delivery Systems, 3M Center, Building 260-3A-05 St. Paul, Minnesota 55144-1000, USA.
J Pharm Sci. 2004 Aug;93(8):2158-75. doi: 10.1002/jps.20116.
The influence of formulation and device configurations on the initial droplet and residual particle size distribution from solution MDIs was theoretically and experimentally examined. Aerodynamic size distribution tests were conducted to characterize the size distribution of the residual particles formed when a solution MDI is actuated. The measured size distributions were approximately log-normally distributed, and did not show evidence of a secondary large particle mode. Theoretical relationships were developed to relate the residual particle size distribution to the initial size distribution of the atomized droplets. The residual particle size distribution was shown to be proportional to the nonvolatile concentration to the one-third power. Ethanol concentration, propellant type, valve size, and actuator orifice diameter were all shown to affect the initial droplet size distribution. Deposition of drug in the mouthpiece and USP inlet affect the measured size distribution during aerodynamic particle size measurements. Although there is a significant increase in the size of initial droplets as ethanol concentration increases, there is only a minor increase in the size of the residual particles measured when the USP Inlet is used due to size dependent deposition in the USP inlet and actuator mouthpiece. Vapor pressure was shown to explain only part of the differences in the size of the atomized droplets for various formulations. Theoretical and empirical equations were developed that make it possible to predict the residual particle size distribution for solution MDIs.
从理论和实验两方面研究了制剂和装置配置对溶液型定量吸入器初始液滴和残留颗粒尺寸分布的影响。进行了空气动力学尺寸分布测试,以表征溶液型定量吸入器启动时形成的残留颗粒的尺寸分布。测得的尺寸分布近似呈对数正态分布,未显示出二次大颗粒模式的迹象。建立了理论关系,将残留颗粒尺寸分布与雾化液滴的初始尺寸分布联系起来。结果表明,残留颗粒尺寸分布与非挥发性浓度的三分之一次方成正比。乙醇浓度、推进剂类型、阀门尺寸以及雾化器孔口直径均显示会影响初始液滴尺寸分布。药物在吸嘴和美国药典(USP)入口处的沉积会影响空气动力学颗粒尺寸测量过程中的测量尺寸分布。尽管随着乙醇浓度的增加,初始液滴尺寸显著增大,但由于USP入口和雾化器吸嘴中与尺寸相关的沉积,使用USP入口时测得的残留颗粒尺寸仅略有增加。结果表明,蒸气压只能解释不同制剂雾化液滴尺寸差异的一部分。建立了理论和经验方程,从而能够预测溶液型定量吸入器的残留颗粒尺寸分布。