College of Pharmacy, Yeungnam University, 214-1, Dae-Dong, Gyongsan 712-749, South Korea.
Drug Dev Ind Pharm. 2013 Sep;39(9):1431-8. doi: 10.3109/03639045.2012.719903. Epub 2012 Oct 9.
A solid form of self-microemulsifying drug delivery system (Solid SMEDDS) was developed by spray-drying with dextran as the inert solid carrier, to improve the oral bioavailability of a poorly water-soluble drug, fenofibrate. The optimized liquid SMEDDS, composed of Labrafil M 1944 CS/Labrasol/Capryol PGMC (15/75/10%v/v) with 10% w/v fenofibrate gave a z-average diameter of around 240 nm. There was no significant difference in the mean droplet size and size distribution of the emulsions obtained from the liquid and solid forms of SMEDDS. Solid state characterizations of solid SMEDDS showed that the crystal state of fenofibrate in solid SMEDDS was converted from crystalline to amorphous form. Solid SMEDDS had significantly higher dissolution rates than the drug powder, due to its fast self-emulsification in the dissolution media. Furthermore, the AUC value of solid SMEDDS was twofold greater than that of the powder, indicating this formulation greatly improved the oral bioavailability of drug in rats. Thus, these results suggest that solid SMEDDS could be used as an effective oral solid dosage form to improve dissolution and oral bioavailability of fenofibrate.
采用喷雾干燥法以葡聚糖作为惰性固体载体,制备了自微乳药物传递系统(Self-Microemulsifying Drug Delivery System,SMEDDS)固体形式,以提高难溶性药物非诺贝特的口服生物利用度。优化的液态 SMEDDS 由 Labrafil M 1944 CS/Labrasol/Capryol PGMC(15/75/10%v/v)与 10%w/v 非诺贝特组成,平均粒径约为 240nm。从液态和固态 SMEDDS 获得的乳剂的平均液滴大小和分布没有显著差异。固态 SMEDDS 的固态特性表明,固态 SMEDDS 中非诺贝特的晶体状态从结晶态转变为无定形态。由于其在溶解介质中的快速自乳化作用,固态 SMEDDS 具有明显更高的溶解速率。此外,固态 SMEDDS 的 AUC 值是药物粉末的两倍,表明该制剂大大提高了药物在大鼠体内的口服生物利用度。因此,这些结果表明,固态 SMEDDS 可用作有效口服固体制剂,以提高非诺贝特的溶解和口服生物利用度。