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喷雾器和网式雾化器对免疫球蛋白 G 的气溶胶化性能。

Aerosolization Performance of Immunoglobulin G by Jet and Mesh Nebulizers.

机构信息

Department of Medical Engineering, Dongguk University College of Medicine, 32 Dongguk-ro, Ilsandong-gu, Goyang-si, Gyeonggi-do, 10326, South Korea.

Department of Electrical & Biological Physics and Institute of Biomaterials, Kwangwoon University, Seoul, 01897, South Korea.

出版信息

AAPS PharmSciTech. 2023 May 24;24(5):125. doi: 10.1208/s12249-023-02579-8.

Abstract

Recently, many preclinical and clinical studies have been conducted on the delivery of therapeutic antibodies to the lungs using nebulizers, but standard treatment guidelines have not yet been established. Our objective was to compare nebulization performance according to the low temperature and concentration of immunoglobulin G (IgG) solutions in different types of nebulizers, and to evaluate the stability of IgG aerosols and the amount delivered to the lungs. The output rate of the mesh nebulizers decreased according to the low temperature and high concentration of IgG solution, whereas the jet nebulizer was unaffected by the temperature and concentration of IgG. An impedance change of the piezoelectric vibrating element in the mesh nebulizers was observed because of the lower temperature and higher viscosity of IgG solution. This affected the resonance frequency of the piezoelectric element and lowered the output rate of the mesh nebulizers. Aggregation assays using a fluorescent probe revealed aggregates in IgG aerosols from all nebulizers. The delivered dose of IgG to the lungs in mice was highest at 95 ng/mL in the jet nebulizer with the smallest droplet size. Evaluation of the performance of IgG solution delivered to the lungs by three types of nebulizers could provide valuable parameter information for determination on dose of therapeutic antibody by nebulizers.

摘要

最近,许多临床前和临床研究都已经在使用雾化器将治疗性抗体递送到肺部方面进行了研究,但尚未制定标准的治疗指南。我们的目的是比较不同类型雾化器中低温和高浓度免疫球蛋白 G(IgG)溶液对雾化性能的影响,并评估 IgG 气溶胶的稳定性及其向肺部的输送量。网孔雾化器的输出速率会随着 IgG 溶液的低温和高浓度而降低,而射流雾化器则不受 IgG 温度和浓度的影响。由于 IgG 溶液的温度较低且粘度较高,因此网孔雾化器中的压电振动元件的阻抗发生变化。这会影响压电元件的共振频率并降低网孔雾化器的输出速率。使用荧光探针进行的聚集分析显示,所有雾化器中的 IgG 气溶胶中都存在聚集物。在具有最小液滴尺寸的射流雾化器中,以 95ng/mL 的 IgG 浓度向肺部输送的 IgG 剂量最高。对三种雾化器输送到肺部的 IgG 溶液的性能进行评估,可以为通过雾化器确定治疗性抗体的剂量提供有价值的参数信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe8/10208687/d3ed5d2bccff/12249_2023_2579_Fig1_HTML.jpg

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