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Effects of Temperature and Humidity on Laser Diffraction Measurements to Jet Nebulizer and Comparison with NGI

机译:温湿度对射流雾化器激光衍射测量的影响以及与NGI的比较

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摘要

Laser diffraction (LD) and next generation impactor (NGI) are commonly used for the evaluation of inhaled drug formulations. In this study, the effect of temperature and humidity on the assessment of the nebulizer particle size distribution (PSD) by LD was investigated, and the consistency between NGI and LD measurements was evaluated. There was an increase in particle size with higher temperature or lower humidity. The particle population with a diameter less than 1 μm was significant at a temperature of 5°C or at relative humidity >90%; however, the same particle population became undetectable when temperature increased to 39°C or at relative humidity of 30–45%. The results of the NGI and LD measurements of aerosol generated from three types of jet nebulizers were compared. A poor correlation between the NGI and LD measurements was observed for PARI LC (2.2 μm) (R 2 = 0.893) and PARI LC (2.9 μm) (R 2 = 0.878), while a relatively good correlation (R 2 = 0.977) was observed for the largest particle size nebulizer (PARI TIA (8.6 μm)). We conclude that the ambient environment and the nebulizer have significant impacts on the performance and consistency between these instruments. These factors should be controlled in the evaluation of inhaled aerosol drug formulations when these instruments are used individually or in combination.
机译:激光衍射(LD)和下一代撞击器(NGI)通常用于评估吸入药物制剂。在这项研究中,研究了温度和湿度对通过LD评估雾化器粒度分布(PSD)的影响,并评估了NGI和LD测量之间的一致性。较高的温度或较低的湿度会使粒径增加。在5°C的温度或相对湿度> 90%的情况下,直径小于1μm的粒子数量显着;但是,当温度升至39°C或相对湿度为30–45%时,相同的粒子数量将变得不可检测。比较了从三种类型的喷射雾化器产生的气溶胶的NGI和LD测量结果。对于PARI LC(2.2μm)(R 2 = 0.893)和PARI LC(2.9μm)(R 2 = 0.878),NGI和LD测量值之间的相关性很差),而最大粒径的雾化器(PARI TIA(8.6μm))观察到相对较好的相关性(R 2 = 0.977)。我们得出结论,周围环境和雾化器对这些仪器之间的性能和一致性有重大影响。当这些仪器单独或组合使用时,应在评估气雾剂吸入配方时控制这些因素。

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