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通过相位多普勒粒子分析仪测定雾化3%氯化钠、沙丁胺醇和依前列醇的液滴大小及分布

Droplet Size and Distribution of Nebulized 3% Sodium Chloride, Albuterol, and Epoprostenol by Phase Doppler Particle Analyzer.

作者信息

McDermott Kelly, Oakley Jason G

机构信息

University of Wisconsin Hospitals and Clinics, Madison, Wisconsin.

Department of Mechanical Engineering, University of Wisconsin-Madison College of Engineering, Madison, Wisconsin.

出版信息

Curr Ther Res Clin Exp. 2021 Feb 18;94:100623. doi: 10.1016/j.curtheres.2021.100623. eCollection 2021.

Abstract

BACKGROUND

Aerosolized drug therapy administered to mechanically ventilated patients is a standard part of pulmonary critical care medicine. Aerosol particle size and distribution are important factors in the optimal delivery of aerosolized drugs to ventilated patients.

OBJECTIVE

The objective of this study was to characterize aerosol droplet size and distribution with laser diffraction for nebulized 3% sodium chloride, albuterol, and epoprostenol sodium (containing glycine) delivered via Aeroneb Solo Mesh Nebulizers (Aerogen, Mountain View, California).

METHODS

A series of functional flow tests were run on each of 8 Solo mesh nebulizers before the study to verify accuracy of flow rates in milliliters per minute. Aerosolized droplets exiting the nebulizer heads were then measured using a phase Doppler particle analyzer. Data collected during delivery of 3% sodium chloride, albuterol, and epoprostenol sodium included aerosol droplet size distribution, mass median aerodynamic diameter (MMAD), and geometric standard deviation. For each Solo nebulizer, droplet size measurements were taken 2 cm away from the nebulizer head and 2 cm away from the wye of a heated, humidified adult ventilator circuit. For measurements taken at the wye, 4 distinct, continuous flow rates (2, 10, 20, and 40 L/min) were generated by an air pump to simulate inspiratory flows delivered with mechanical ventilation. The expiratory limb was capped, and the nebulizer head was inserted into the breathing circuit upstream of the humidifier.

RESULTS

Each Solo nebulizer met Aerogen's recommended minimum flow rate of 0.2 mL/min, ranging from 0.23 to 0.31 mL/min. The MMAD of the 3 tested aerosols was several times smaller when measured at the wye outlet of the heated/humidified breathing circuit (0.82-2.73 µm) compared with droplets measured directly at the nebulizer outlet (MMAD, 4.6-7.3 µm). There was also significant variability across Solo heads with some ventilator flow rates. The mean MMAD at the wye for the 3% sodium chloride solution, albuterol, and epoprostenol test solutions was 1.62 µm, 1.09 µm, and 1.18 µm, respectively. The mean MMAD at the nebulizer for the 3% sodium chloride solution, albuterol, and epoprostenol test solutions was 5.37 µm, 5.73 µm, and 6.73 µm, respectively.

CONCLUSIONS

Results from this study suggest that particle size of aerosolized drugs administered via a commonly used setup for delivery of in-line aerosols to mechanically ventilated patients may be several times smaller than expected and may result in less drug being delivered to the patient than previously realized.( 2021; 82:XXX-XXX)© 2021 Elsevier HS Journals, Inc.

摘要

背景

对机械通气患者进行雾化药物治疗是肺部重症医学的标准组成部分。雾化颗粒大小和分布是将雾化药物最佳输送给通气患者的重要因素。

目的

本研究的目的是通过激光衍射法对经Aeroneb Solo Mesh雾化器(Aerogen,加利福尼亚州山景城)输送的3%氯化钠、沙丁胺醇和依前列醇钠(含甘氨酸)雾化液滴的大小和分布进行表征。

方法

在研究前,对8个Solo网状雾化器分别进行了一系列功能流量测试,以验证每分钟毫升数的流速准确性。然后使用相位多普勒粒子分析仪测量离开雾化器头部的雾化液滴。在输送3%氯化钠、沙丁胺醇和依前列醇钠期间收集的数据包括雾化液滴大小分布、质量中位空气动力学直径(MMAD)和几何标准差。对于每个Solo雾化器,在距离雾化器头部2 cm和距离加热、加湿的成人呼吸机回路的Y形接头2 cm处进行液滴大小测量。对于在Y形接头处进行的测量,通过气泵产生4种不同的连续流速(2、10、20和40 L/min),以模拟机械通气时的吸气流量。呼气支路封闭,雾化器头部插入加湿器上游的呼吸回路中。

结果

每个Solo雾化器均达到了Aerogen推荐的最低流速0.2 mL/min,范围为0.23至0.31 mL/min。与直接在雾化器出口处测量的液滴(MMAD,4.6 - 7.3 µm)相比,在加热/加湿呼吸回路的Y形接头出口处测量时,3种测试气雾剂的MMAD要小几倍。在一些呼吸机流速下,不同Solo雾化器之间也存在显著差异。3%氯化钠溶液、沙丁胺醇和依前列醇测试溶液在Y形接头处的平均MMAD分别为1.62 µm、1.09 µm和1.18 µm。3%氯化钠溶液、沙丁胺醇和依前列醇测试溶液在雾化器处的平均MMAD分别为5.37 µm、5.73 µm和6.73 µm。

结论

本研究结果表明,通过常用的在线雾化给药装置向机械通气患者给药时,雾化药物的颗粒大小可能比预期小几倍,并且可能导致输送给患者的药物比之前意识到的要少。(2021;82:XXX - XXX)©2021爱思唯尔HS期刊公司

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec6f/8296146/8395312476a9/gr1.jpg

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