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间隔器对定量吸入气雾剂双极静电电荷特性的影响——以替利定为例的案例研究

Effect of Spacers on the Bipolar Electrostatic Charge Properties of Metered Dose Inhaler Aerosols-A Case Study With Tilade.

作者信息

Leung Sharon Shui Yee, Chiow Adam Chong Ming, Kwok Philip Chi Lip, Ukkonen Ari, Chan Hak-Kim

机构信息

Faculty of Pharmacy, The University of Sydney, Sydney, New South Wales 2006, Australia.

Department of Pharmacology and Pharmacy, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

出版信息

J Pharm Sci. 2017 Jun;106(6):1553-1559. doi: 10.1016/j.xphs.2017.02.014. Epub 2017 Feb 24.

Abstract

Aerosols emitted from metered dose inhalers (MDIs) are generally electrically charged and bipolar in nature. Although a spacer can effectively dampen the charge magnitude of aerosols, the electrostatic interactions between the positively and negatively charged particles and the spacer have not yet been characterized separately. The Bipolar Charge Analyzer (BOLAR) was employed to investigate interactions between the spacer and the charged aerosols. Three individual actuations of Tilade MDI were introduced without a spacer and through an antistatic AeroChamber Plus Z Stat, an uncoated and a detergent-coated AeroChamber Plus spacer into the BOLAR at 60 L/min. Charge and mass profiles were determined. The surface potential of spacers followed the order of uncoated > detergent-coated > antistatic spacer. The spacers had minimal impact on the positively charged particles but the charge magnitude of the negatively charged particles was in the opposite order as the spacer surface potential. The charge-to-mass ratio of particles had little alteration for all measurements. Negatively charged particles had a higher tendency to deposit on the spacer walls, possibly due to their higher abundance in the confined spacer volume. The bipolar data may prove useful for designing better MDIs and spacers and modelling lung deposition of charged aerosol particles.

摘要

定量吸入器(MDIs)喷出的气雾剂通常带有电荷且本质上是双极的。尽管储雾罐可以有效降低气雾剂的电荷强度,但带正电和负电的颗粒与储雾罐之间的静电相互作用尚未分别得到表征。采用双极电荷分析仪(BOLAR)来研究储雾罐与带电气雾剂之间的相互作用。在不使用储雾罐的情况下,以及通过抗静电的AeroChamber Plus Z Stat、未涂层和涂有洗涤剂的AeroChamber Plus储雾罐,以60升/分钟的流速将三次单独启动的替利定MDIs气雾剂引入BOLAR中。测定电荷和质量分布。储雾罐的表面电位顺序为未涂层的>涂有洗涤剂的>抗静电储雾罐。储雾罐对带正电的颗粒影响最小,但带负电颗粒的电荷强度与储雾罐表面电位的顺序相反。所有测量中颗粒的荷质比几乎没有变化。带负电的颗粒更倾向于沉积在储雾罐壁上,这可能是因为它们在有限的储雾罐空间中含量更高。这些双极数据可能对设计更好的MDIs和储雾罐以及模拟带电气雾剂颗粒在肺部的沉积很有用。

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