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修正照片反射法输出及其在干粉吸入器中药物释放动态分析中的应用。

Correcting Photo Reflection Method Output and Its Application in the Dynamic Analysis of Particle Release from Dry Powder Inhalers.

机构信息

Department of Respiratory Medicine, Shonan Fujisawa Tokushukai Hospital, Fujisawa, Japan.

Department of Respiratory Medicine, Yamachika Memorial General Hospital, Odawara, Japan.

出版信息

J Aerosol Med Pulm Drug Deliv. 2021 Aug;34(4):223-230. doi: 10.1089/jamp.2020.1610. Epub 2020 Nov 4.

Abstract

The photo reflection method (PRM) is used to measure light reflected from particles released from dry powder inhalers (DPIs). This simple method depicts time trajectories of released drugs; however, it underestimates the number of particles at high peak inhalation flow rates (PIFs). In this study, we aimed to correct this underestimation and clarify whether long inhalation is necessary for capsule-type DPIs, using this unique method. To establish quantitative measurements using the PRM, several types of DPIs were inhaled with square-wave inhalations at different PIFs using an inhalation simulator, and the total emitted dose (TED) and the release time of the TED (T) were measured. Next, capsule-type DPIs were inhaled using inhalation patterns of patients with chronic obstructive pulmonary disease (COPD), and particle release time trajectories were recorded. For all DPIs, except for Turbuhaler (TBH), both TED and T were hyperbolically decreased with an increase in the PIF of square-wave inhalations. TED correction using the T showed flat TED changes at high PIF ranges. The patient inhalation analysis showed that the corrected TEDs of seven COPD inhalation patterns were not significantly different. The PRM further revealed that the inhaled flow rate and release time of all seven patterns were sufficient to release particles in the capsule. The inhaled flow rate and T that exceeded specific conditions enabled complete particle release from the DPIs except for TBH. Therefore, an extremely long inhalation is not required for capsule-type DPIs. Our corrected time trajectory analysis using the PRM provides a new strategy for the particle release analysis of DPIs.

摘要

光反射法(PRM)用于测量干粉吸入器(DPI)释放的颗粒反射的光。这种简单的方法描绘了释放药物的时间轨迹;然而,它在高峰值吸入流速(PIF)下低估了颗粒的数量。在这项研究中,我们旨在使用这种独特的方法纠正这种低估,并阐明对于胶囊型 DPI 是否需要长时间吸入。为了使用 PRM 进行定量测量,使用吸入模拟器以不同的 PIF 进行方波吸入,以吸入几种类型的 DPI,并测量总发射剂量(TED)和 TED 的释放时间(T)。接下来,使用慢性阻塞性肺疾病(COPD)患者的吸入模式吸入胶囊型 DPI,并记录颗粒释放时间轨迹。对于除 Turbuhaler(TBH)以外的所有 DPI,TED 和 T 均随着方波吸入 PIF 的增加而呈双曲线下降。使用 T 对 TED 进行校正显示在高 PIF 范围内 TED 变化平稳。患者吸入分析表明,七个 COPD 吸入模式的校正 TED 没有显著差异。PRM 进一步表明,所有七种模式的吸入流速和释放时间足以释放胶囊中的颗粒。超过特定条件的吸入流速和 T 使除 TBH 以外的所有 DPI 都能完全释放颗粒。因此,胶囊型 DPI 不需要进行极其长的吸入。我们使用 PRM 进行的校正时间轨迹分析为 DPI 的颗粒释放分析提供了一种新策略。

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