Department of Industrial Pharmacy, Faculty of Pharmacy, Meijo University, 150 Yagotoyama, Tempaku, Nagoya 468-8503, Japan.
Eur J Pharm Sci. 2013 Nov 20;50(3-4):272-81. doi: 10.1016/j.ejps.2013.07.011. Epub 2013 Jul 29.
The purpose of the present research is to establish a novel nanosizing technique starting from wet nano-milling, named "dry nanosuspension" technique for poorly water-soluble drugs. The spray freeze-drying (SFD) method was applied instead of the spray-drying one previously developed. Drug particles were milled in the aqueous solution of dispersing agents using an oscillating beads-milling apparatus. The milled nanosuspension was sprayed to the surface of liquid nitrogen, and the resultant iced droplets were freeze-dried to obtain the powdery product. The loading ratio of a dispersing agent was investigated to enhance its redispersing property. Dry nanosuspension, which could be spontaneously dispersed into original nanosuspension in water, was obtained by SFD process. It was assumed that self dispersion property would be attributed to its structure with porous network, in which the primary milled drug crystals were embedded. Such unique structure contributed greatly to immediate release behaviors of the drug in gastrointestinal buffered media. These pharmaceutical properties were enhanced by increasing the ratio of the dispersing agent to the drug and the solid content in suspension to be sprayed. The present technique via wet milling and spray freeze-drying processes would be a novel dissolution-enhanced technology for poorly water-soluble drugs.
本研究的目的是建立一种新的纳米细化技术,从湿纳米细化开始,称为“干纳米混悬液”技术,用于难溶性药物。喷雾冷冻干燥(SFD)方法被应用于替代之前开发的喷雾干燥方法。药物颗粒在分散剂的水溶液中使用振动珠磨机进行研磨。研磨后的纳米混悬液被喷到液氮表面,所得的冰滴被冷冻干燥以获得粉末产品。考察了载药量以增强其再分散性能。通过 SFD 过程获得了可自发分散到水中的原始纳米混悬液的干纳米混悬液。据推测,自分散性能归因于其具有多孔网络的结构,其中嵌入了初级研磨药物晶体。这种独特的结构对药物在胃肠道缓冲介质中的快速释放行为有很大的贡献。通过增加分散剂与药物的比例以及要喷雾的悬浮液中的固体含量,可以增强这些药物性能。通过湿磨和喷雾冷冻干燥工艺的新技术将成为难溶性药物的新型溶解增强技术。