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基于乙醇前体脂质体技术的脂质体的振动网雾化。

Vibrating-mesh nebulization of liposomes generated using an ethanol-based proliposome technology.

机构信息

School of Pharmacy and Biomedical Sciences, University of Central Lancashire, Preston, United Kingdom.

出版信息

J Liposome Res. 2011 Jun;21(2):173-80. doi: 10.3109/08982104.2010.505574. Epub 2010 Aug 4.


DOI:10.3109/08982104.2010.505574
PMID:20684671
Abstract

This is the first study that evaluates the influence of the compartmental design of the micropump Aeroneb Go nebulizer and the viscosity of a proliposome hydration medium on vibrating-mesh aerosolization of liposomes. Ethanol-based proliposomes comprising soya phosphatidylcholine and cholesterol (1:1 mole ratio) were hydrated by using isotonic NaCl (0.9%) or sucrose (9.25%) solutions to generate liposomes that entrapped approximately 61% of the hydrophilic drug, salbutamol sulphate. Liposomes were aerosolized by the nebulizer to a two-stage impinger. For both formulations, the aerosol mass output was higher than the phospholipid output, indicating some accumulation of large liposomes or liposome aggregate within the nebulizer. Using NaCl (0.9%) solution as the dispersion medium, aerosol droplet size was much smaller and aerosol mass and phospholipid outputs were higher. This was attributed to the lower viscosity of the NaCl solution, resulting in a reduced retention of the aerosols in the "trap" of the nebulizer. For the entrapped salbutamol sulphate, although the "fine particle fraction" was relatively high (57.44%), size reduction of the liposomes during nebulization caused marked losses of the drug originally entrapped. Overall, liposomes generated from proliposomes when using this nebulizer showed high nebulization output and small droplet size. However, further work is required to reduce the losses of the originally entrapped drug from liposomes.

摘要

这是第一项评估 Aeroneb Go 雾化器的隔室设计和前体脂质体水化介质的粘度对脂质体振动网雾化的影响的研究。由大豆卵磷脂和胆固醇(1:1 摩尔比)组成的基于乙醇的前体脂质体用等渗 NaCl(0.9%)或蔗糖(9.25%)溶液水合,生成包封约 61%亲水药物硫酸沙丁胺醇的脂质体。用雾化器将脂质体雾化到两级撞击器。对于两种配方,气溶胶质量输出均高于磷脂输出,表明在雾化器中有一些大的脂质体或脂质体聚集体的积累。使用 NaCl(0.9%)溶液作为分散介质时,气溶胶液滴尺寸更小,气溶胶质量和磷脂输出更高。这归因于 NaCl 溶液的粘度较低,导致气溶胶在雾化器的“陷阱”中滞留减少。对于包封的硫酸沙丁胺醇,尽管“细颗粒分数”相对较高(57.44%),但在雾化过程中脂质体的粒径减小导致最初包封的药物明显损失。总体而言,使用这种雾化器从前体脂质体生成的脂质体显示出高雾化输出和小液滴尺寸。然而,需要进一步的工作来减少最初包封在脂质体中的药物的损失。

相似文献

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