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用于全身给药的新型压力定量吸入器促动器的设计优化

Design optimization of a novel pMDI actuator for systemic drug delivery.

作者信息

Kakade Prashant P, Versteeg Henk K, Hargrave Graham K, Genova Perry, Williams Iii Robert C, Deaton Daniel

机构信息

Kos Pharmaceuticals, Inc., Morrisville, North Carolina 27560, USA.

出版信息

J Aerosol Med. 2007 Winter;20(4):460-74. doi: 10.1089/jam.2007.0595.

Abstract

Pressurized metered dose inhalers (pMDIs) are the most widely prescribed and economical respiratory drug delivery systems. Conventional pMDI actuators-those based on "two-orifice-and-sump" designs-produce an aerosol with a reasonable respirable fraction, but with high aerosol velocity. The latter is responsible for high oropharyngeal deposition, and consequently low drug delivery efficiency. Kos' pMDI technology is based on a proprietary vortex nozzle actuator (VNA), an innovative actuator configuration that seeks to reduce aerosol plume velocity, thereby promoting deep lung deposition. Using VNA development as a case study, this paper presents a systematic design optimization process to improve the actuator performance through use of advanced optical characterization tools. The optimization effort mainly relied on laser-based optical diagnostics to provide an improved understanding of the fundamentals of aerosol formation and interplay of various geometrical factors. The performance of the optimized VNA design thus evolved was characterized using phase Doppler anemometry and cascade impaction. The aerosol velocities for both standard and optimized VNA designs were found to be comparable, with both notably less than conventional actuators. The optimized VNA design also significantly reduces drug deposition in the actuator as well as USP throat adapter, which in turn, leads to a significantly higher fine particle fraction than the standard design (78 +/- 3% vs. 63 +/- 2% on an ex valve basis). This improved drug delivery efficiency makes VNA technology a practical proposition as a systemic drug delivery platform. Thus, this paper demonstrates how advanced optical diagnostic and characterization tools can be used in the development of high efficiency aerosol drug delivery devices.

摘要

压力定量吸入器(pMDIs)是处方最为广泛且经济的呼吸药物递送系统。传统的pMDI促动器——即基于“双孔及贮液槽”设计的促动器——产生的气雾剂具有合理的可吸入部分,但气雾剂速度较高。后者导致口咽部沉积率高,进而药物递送效率低。科斯的pMDI技术基于一种专利涡旋喷嘴促动器(VNA),这是一种创新的促动器配置,旨在降低气雾剂羽流速度,从而促进肺部深部沉积。以VNA的开发为例,本文提出了一个系统的设计优化过程,通过使用先进的光学表征工具来提高促动器性能。优化工作主要依靠基于激光的光学诊断来更好地理解气雾剂形成的基本原理以及各种几何因素的相互作用。使用相位多普勒风速仪和多级冲击器对如此改进后的优化VNA设计的性能进行了表征。发现标准VNA设计和优化VNA设计的气雾剂速度相当,且两者均明显低于传统促动器。优化的VNA设计还显著减少了药物在促动器以及美国药典咽喉适配器中的沉积,这反过来又导致细颗粒分数比标准设计显著更高(以阀外计为78±3%对63±2%)。这种提高的药物递送效率使VNA技术作为一种全身药物递送平台成为一个切实可行的方案。因此,本文展示了先进的光学诊断和表征工具如何用于高效气雾剂药物递送装置的开发。

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