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表面活性剂添加剂对肺部气溶胶给药后药物传输和分布均匀性的影响。

Effect of a Surfactant Additive on Drug Transport and Distribution Uniformity After Aerosol Delivery to Lungs.

机构信息

Department of Chemical and Petroleum Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Division of Pulmonary, Allergy, and Critical Care Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

J Aerosol Med Pulm Drug Deliv. 2022 Jun;35(3):146-153. doi: 10.1089/jamp.2021.0006. Epub 2021 Oct 12.

Abstract

Inhaled drug delivery can be limited by heterogeneous dose distribution. An additive that would disperse drug over the internal surfaces of the lung after aerosol deposition could improve dosing uniformity and increase the treated area. Our previous studies demonstrated that surfactant additives can produce surface tension-driven (Marangoni) flows that effectively dispersed aerosol-delivered drugs over mucus surfaces. Here we sought to determine whether the addition of a surfactant would increase transport of an aerosol between lung regions and also improve dosing uniformity in human lungs. We compared the deposition and postdeposition dispersion of surfactant (10 mg/mL dipalmitoylphosphatidylcholine; DPPC) and saline-based liquid aerosols, admixed with Technetium 99m (Tc99m) diethylenetriaminepentaacetic acid, using gamma scintigraphy. Deposition images were obtained in eight pairs of ventilated human lungs. The trachea was intubated and the mainstem bronchi were alternately clamped so that saline was delivered to one lung and then DPPC to the other (sides alternated). The lungs were continually imaged for 15 minutes during delivery. We assessed transport of the deposited aerosol by quantifying the percentage of Tc99m in each of four lung quadrants over time. We quantified dose uniformity within each lung quadrant by measuring the coefficient of variation (CV = standard deviation of the pixel associated radioactive counts/mean of the counts within each quadrant). There was no change in the percentage of Tc99m in each quadrant over time, indicating no improvement in transport with the addition of the surfactant. The addition of surfactant was associated with a statistically significant decrease in CV in the lower inner lung quadrant at each of the three time points, indicating an improvement in dosing uniformity. These preliminary results indicate the possible utility of adding surfactant to aerosols to improve drug distribution uniformity to lower inner lung regions.

摘要

吸入式药物输送可能会受到不均匀剂量分布的限制。一种添加剂,如果能够在气溶胶沉积后将药物分散在肺部内部表面,可以提高给药的均匀性并增加治疗面积。我们之前的研究表明,表面活性剂添加剂可以产生表面张力驱动(Marangoni)流,从而有效地将气溶胶输送的药物分散在粘液表面上。在这里,我们试图确定添加表面活性剂是否会增加气溶胶在肺区域之间的传输,并且还可以改善人体肺部的给药均匀性。

我们使用伽马闪烁成像技术比较了表面活性剂(10mg/mL 二棕榈酰磷脂酰胆碱;DPPC)和盐水基液体气溶胶的沉积和沉积后分散,这些气溶胶与Technetium 99m(Tc99m)二乙三胺五乙酸混合。在八对通气的人肺中获得了沉积图像。将气管插管并交替夹住主支气管,以使盐水输送到一侧肺,然后 DPPC 输送到另一侧肺(交替侧)。在输送过程中,持续对肺部进行 15 分钟的成像。我们通过随时间量化每个肺象限中 Tc99m 的百分比来评估沉积气溶胶的传输。我们通过测量每个象限内像素放射性计数的标准偏差/每个象限内计数的平均值来量化每个肺象限内的剂量均匀性(CV=)。

随着时间的推移,每个象限中 Tc99m 的百分比没有变化,这表明添加表面活性剂并没有改善传输。添加表面活性剂与每个时间点的下内肺象限的 CV 统计学显著降低相关,表明剂量均匀性得到改善。

这些初步结果表明,向气溶胶中添加表面活性剂以改善药物分布均匀性到下内肺区域可能是有用的。

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