Vaughn Jason M, McConville Jason T, Burgess David, Peters Jay I, Johnston Keith P, Talbert Robert L, Williams Robert O
College of Pharmacy, University of Texas at Austin, TX 78712-1074, USA.
Eur J Pharm Biopharm. 2006 Jun;63(2):95-102. doi: 10.1016/j.ejpb.2006.01.006. Epub 2006 Mar 3.
The objective of this study was to determine and compare the lung and serum concentrations in mice following oral and pulmonary dosing of amorphous nanoparticulate itraconazole (ITZ) compositions as well as the Sporanox oral solution (itraconazole/Janssen). Second, the steady state partitioning of ITZ in lung tissue and circulatory compartments following repeated oral and pulmonary dosing was determined. The pulmonary formulation (ITZ-pulmonary) consisted of ITZ, polysorbate 80, and poloxamer 407 in a 1:0.75:0.75 ratio and the oral formulation (ITZ-oral) consisted of ITZ, PEG 8000, poloxamer 188, and sorbitan monooleate 80 in a 1:1:2:1 ratio. Mice were dosed every 12 h by nebulization with ITZ-pulmonary, or by oral gavage with ITZ-oral or Sporanox oral solution (n = 12 per study arm). ITZ-pulmonary achieved significantly greater (>10-fold) lung tissue concentrations compared to the Sporanox oral solution and ITZ-oral. There were no statistical differences between the two oral formulations. ITZ-pulmonary achieved significantly greater lung levels per unit serum concentration compared to the orally dosed ITZ compositions. High and sustained lung tissue concentrations were achieved via inhalation of an amorphous nanoparticulate ITZ-pulmonary composition while maintaining serum levels which are above the minimum lethal concentration (MLC) of Aspergillus fumigatus.
本研究的目的是测定并比较小鼠口服和肺部给药无定形纳米颗粒伊曲康唑(ITZ)组合物以及斯皮仁诺口服溶液(伊曲康唑/杨森公司)后的肺组织和血清浓度。其次,测定重复口服和肺部给药后ITZ在肺组织和循环隔室中的稳态分配。肺部制剂(ITZ-肺部)由ITZ、聚山梨酯80和泊洛沙姆407按1:0.75:0.75的比例组成,口服制剂(ITZ-口服)由ITZ、聚乙二醇8000、泊洛沙姆188和脱水山梨醇单油酸酯80按1:1:2:1的比例组成。通过用ITZ-肺部进行雾化,或用ITZ-口服或斯皮仁诺口服溶液进行灌胃,每12小时给小鼠给药一次(每个研究组n = 12)。与斯皮仁诺口服溶液和ITZ-口服相比,ITZ-肺部在肺组织中的浓度显著更高(>10倍)。两种口服制剂之间无统计学差异。与口服给药的ITZ组合物相比,ITZ-肺部每单位血清浓度在肺中的水平显著更高。通过吸入无定形纳米颗粒ITZ-肺部组合物可实现高且持续的肺组织浓度,同时维持高于烟曲霉最低致死浓度(MLC)的血清水平。