Mitchell Jolyon P, Nagel Mark W
Trudell Medical International, London, Ontario, Canada.
J Aerosol Med. 2003 Winter;16(4):341-77. doi: 10.1089/089426803772455622.
Cascade impactors, including the multi-stage liquid impinger, are by far the most widely encountered means for the in vitro determination of the particle size distribution of aerosols from medical inhalers, both in product development, batch release and in applications with add-on devices. This is because they directly measure aerodynamic size, which is the most relevant parameter to describe particle transport within the respiratory tract. At the same time, it is possible to quantify the mass of active pharmaceutical ingredient in different size ranges independent of other non-physiologically active components of the formulation. We begin by providing an overview of the operating principles of impactors and then highlight the various configurations and adaptations that have been adopted to characterize the various classes of inhaler. We continue by examining the limitations of the cascade impaction method, in particular looking at potential sources of measurement bias and discussing both appropriate and inappropriate uses of impactor-generated data. We also present a synopsis of current developments, including the Next Generation Pharmaceutical Impactor, and automation of cascade impactors for routine inhaler performance measurements.
多级冲击器,包括多级液体冲击器,是目前在医学吸入器气雾剂粒径分布的体外测定中应用最为广泛的方法,无论是在产品研发、批次放行还是在与附加装置相关的应用中。这是因为它们直接测量空气动力学粒径,而空气动力学粒径是描述呼吸道内颗粒传输的最相关参数。同时,能够独立于制剂的其他非生理活性成分,对不同粒径范围内的活性药物成分质量进行量化。我们首先概述冲击器的工作原理,然后重点介绍为表征各类吸入器而采用的各种配置和改进。接着,我们将审视多级冲击法的局限性,尤其关注测量偏差的潜在来源,并讨论冲击器生成数据的恰当和不恰当用途。我们还将简要介绍当前的发展情况,包括下一代药物冲击器,以及用于常规吸入器性能测量的多级冲击器自动化。