Xiang Qing-yu, Wang Min-ting, Chen Fu, Gong Tao, Jian Yan-lin, Zhang Zhi-rong, Huang Yuan
Key Laboratory of Drug Targeting of Ministry of Education, West China School of Pharmacy, Sichuan University, Chengdu, P.R. China.
Arch Pharm Res. 2007 Apr;30(4):519-25. doi: 10.1007/BF02980228.
The objective of the present study was to develop a novel solid lipid nanoparticle (SLN) for the lung-targeting delivery of dexamethasone acetate (DXM) by intravenous administration. DXM loaded SLN colloidal suspensions were prepared by the high pressure homogenization method. The mean particle size, drug loading capacity and drug entrapment efficiency (EE%) of SLNs were investigated. In vitro drug release was also determined. The biodistribution and lung-targeting efficiency of DXM-SLNs and DXM-solutions (DXM-sol) in mice after intravenous administration were studied using reversed-phase high-performance liquid chromatography (HPLC). The results (expressed as mean +/- SD) showed that the DXM-SLNs had an average diameter of 552 +/- 6.5 nm with a drug loading capacity of 8.79 +/- 0.04% and an entrapment efficiency of 92.1 +/- 0.41%. The in vitro drug release profile showed that the initial burst release of DXM from DXM-SLNs was about 68% during the first 2 h, and then the remaining drug was released gradually over the following 48 hours. The biodistribution of DXM-SLNs in mice was significantly different from that of DXM-sol. The concentration of DXM in the lung reached a maximum level at 0.5 h post DXM-SLNs injection. A 17.8-fold larger area under the curve of DXM-SLNs was achieved compared to that of DXM-sol. These results indicate that SLN may be promising lung-targeting drug carrier for lipophilic drugs such as DXM.
本研究的目的是开发一种新型固体脂质纳米粒(SLN),用于通过静脉注射实现醋酸地塞米松(DXM)的肺靶向递送。采用高压均质法制备了载有DXM的SLN胶体悬浮液。研究了SLN的平均粒径、载药量和药物包封率(EE%)。还测定了体外药物释放情况。采用反相高效液相色谱(HPLC)研究了静脉注射后DXM-SLN和DXM溶液(DXM-sol)在小鼠体内的生物分布和肺靶向效率。结果(以平均值±标准差表示)表明,DXM-SLN的平均直径为552±6.5nm,载药量为8.79±0.04%,包封率为92.1±0.41%。体外药物释放曲线表明,DXM从DXM-SLN的初始突释在前2小时约为68%,然后在接下来的48小时内剩余药物逐渐释放。DXM-SLN在小鼠体内的生物分布与DXM-sol显著不同。注射DXM-SLN后0.5小时,肺中DXM浓度达到最高水平。与DXM-sol相比,DXM-SLN的曲线下面积大17.8倍。这些结果表明,SLN可能是一种有前景的亲脂性药物如DXM的肺靶向药物载体。