[Study on Performance of Nebulizer for Pressurized Intraperitoneal Aerosol Chemotherapy].

Q4 Medicine
Lanfeng Zhang, Guangjun Guo, Guibing Hou
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引用次数: 0

Abstract

Objective: The study investigates the performance parameters of a nebulizer for pressurized intraperitoneal aerosol chemotherapy (PIPAC).

Methods: Laser diffraction spectroscopy was used to measure the median droplet diameter ( D 50) and spray angle during the steady-state aerosol phase.

Results: The minimum droplet diameter of aerosol was achieved when using a nozzle of 0.2 mm diameter and 0.07 mm thickness. The nebulizer could not produce steady-state aerosol when the liquid flow rate was less than or equal to 0.3 mL/s. When the liquid flow rate was greater than or equal to 0.5 mL/s, as the working pressure increased, the median particle size gradually decreased and the spray angle gradually increased. When the pressure is greater than or equal to 200 psi(1 psi=6 894.76 Pa), as the liquid flow rate increased, the spray angle gradually increased. At a flow rate of 0.7 mL/s and working pressure of 300 psi, the median droplet diameter of aerosol D 50 was 16 μm with a spray angle up to 89.2°.

Conclusion: As a novel intraperitoneal drug delivery technology, PIPAC requires further research focusing on reducing droplet size, expanding drug distribution, improving tissue permeability, and increasing drug concentration.

[加压腹腔喷雾化疗用雾化器的性能研究]。
目的:研究加压腹腔喷雾化疗(PIPAC)喷雾器的性能参数。方法:采用激光衍射光谱法测定稳态气溶胶阶段的中位液滴直径(d50)和喷雾角。结果:使用直径为0.2 mm、厚度为0.07 mm的喷嘴时,气溶胶的液滴直径最小。当液体流速小于等于0.3 mL/s时,喷雾器不能产生稳态气溶胶。当液体流速大于或等于0.5 mL/s时,随着工作压力的增大,中位粒径逐渐减小,喷雾角度逐渐增大。当压力大于等于200 psi(1 psi=6 894.76 Pa)时,随着液体流量的增加,喷雾角逐渐增大。在流速为0.7 mL/s、工作压力为300 psi的条件下,气溶胶d50的中位液滴直径为16 μm,喷雾角为89.2°。结论:PIPAC作为一种新型的腹腔给药技术,在减小液滴大小、扩大药物分布、改善组织通透性、提高药物浓度等方面有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
中国医疗器械杂志
中国医疗器械杂志 Medicine-Medicine (all)
CiteScore
0.40
自引率
0.00%
发文量
8086
期刊介绍: Chinese Journal of Medical Instrumentation mainly reports on the development, progress, research and development, production, clinical application, management, and maintenance of medical devices and biomedical engineering. Its aim is to promote the exchange of information on medical devices and biomedical engineering in China and turn the journal into a high-quality academic journal that leads academic directions and advocates academic debates.
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