Division of Pharmaceutics, University of Texas at Austin, Austin, TX, USA.
Eur J Pharm Biopharm. 2010 May;75(1):33-41. doi: 10.1016/j.ejpb.2010.01.011. Epub 2010 Jan 25.
The effect of supersaturation on bioavailability of inhaled nebulized aerosols is compared for amorphous versus crystalline nanoparticulate dispersions. The nanocrystalline formulations of itraconazole (ITZ) were made by wet milling (i.e. Wet-milled ITZ), whereas amorphous nanostructured aggregates (ITZ/mannitol/lecithin=1:0.5:0.2, weight ratio) were made by an ultra-rapid freezing process (i.e. URF-ITZ). Dissolution tests revealed the extent of supersaturation was 4.7-times higher for URF-ITZ versus Wet-milled ITZ, though their dissolution rates were similar. The aerodynamic performances of both aqueous colloidal dispersions were comparable and suitable for deep lung delivery. Single-dose 24-h pharmacokinetic studies were conducted in Sprague-Dawley rats following inhalation of the nebulized colloidal dispersions (equivalent to 20mgITZ/mL dispersion in 5mL) in a nose-only dosing apparatus. Lung depositions following inhalation were similar for both compositions. In systemic circulation, Wet-milled ITZ and URF-ITZ achieved C(max) of 50 and 180ng/mL at 2.7 and 4.0h, and AUC(0-24) of 662 and 2543ngh/mL, respectively, based on a one-compartmental analysis. Pulmonary delivery of the nanoparticulate amorphous ITZ composition resulted in significantly higher systemic bioavailability than for the nanocrystalline ITZ composition, as a result of the higher supersaturation that increased the permeation.
比较了无定形与结晶纳米颗粒分散体对吸入雾化气溶胶生物利用度的超饱和度的影响。伊曲康唑(ITZ)的纳米晶体制剂是通过湿磨(即湿磨 ITZ)制备的,而无定形纳米结构聚集体(ITZ/甘露醇/卵磷脂=1:0.5:0.2,重量比)是通过超快速冷冻过程(即 URF-ITZ)制备的。溶解试验表明,URF-ITZ 的过饱和度比湿磨 ITZ 高 4.7 倍,尽管它们的溶解速率相似。两种水胶体分散体的空气动力学性能相当,适用于深肺输送。在鼻内给药装置中吸入相当于 5ml 分散体中 20mgITZ/ml 的雾化胶体分散体后,在 Sprague-Dawley 大鼠中进行了单次 24 小时药代动力学研究。吸入后肺部沉积对于两种组合物相似。在全身循环中,湿磨 ITZ 和 URF-ITZ 在 2.7 和 4.0h 时达到 C(max)为 50 和 180ng/ml,AUC(0-24)为 662 和 2543ngh/ml,基于一室分析。由于超饱和度增加了渗透,纳米颗粒无定形 ITZ 组合物的肺部给药导致全身生物利用度显著高于纳米晶 ITZ 组合物。