Department of Pharmacy, Medical College, Nanchang University, No. 461, Bayi Road, Nanchang, Jiangxi Province 330006, China.
Arch Pharm Res. 2011 Jul;34(7):1113-23. doi: 10.1007/s12272-011-0709-8. Epub 2011 Aug 3.
Dipyridamole shows poor and variable bioavailability after oral administration due to pHdependent solubility, low biomembrane permeability as well as being a substrate of P-glycoprotein. In order to improve the oral absorption of dipyridamole, a self-microemulsifying drug delivery system (SMEDDS) for dipyridamole was prepared and evaluated in vitro and in vivo. The optimum formulation was 18% oleic acid, 12% Labrafac lipophile WL 1349, 42% Solutol HS 15 and 28% isopropyl alcohol. It was found that the performance of self-microemulsification with the combination of oleic acid and Labrafac lipophile WL 1349 increased compared with just one oil. The results obtained from an in vitro dissolution assay indicated that dipyridamole in SMEDDS dissolved rapidly and completely in pH 6.8 aqueous media, while the commercial drug tablet was less soluble. An oral bioavailability study in rats showed that dipyridamole in the SMEDDS formulation had a 2.06-fold increased absorption compared with the simple drug suspension. It was evident that SMEDDS may be an effective approach to improve the oral absorption for drugs having pH-dependent solubility.
由于 pH 依赖性溶解度、低生物膜通透性以及作为 P 糖蛋白底物等原因,双嘧达莫口服后生物利用度差且不稳定。为了提高双嘧达莫的口服吸收,制备了双嘧达莫自微乳给药系统(SMEDDS)并进行了体外和体内评价。最佳配方为 18%油酸、12%Labrafac lipophile WL 1349、42%Solutol HS 15 和 28%异丙醇。结果发现,油酸和 Labrafac lipophile WL 1349 的组合自微乳化性能优于单一油相。体外溶出度试验结果表明,SMEDDS 中的双嘧达莫在 pH6.8 水性介质中迅速完全溶解,而市售药物片剂的溶解度较低。在大鼠体内生物利用度研究中,SMEDDS 制剂中的双嘧达莫的吸收度比简单药物混悬剂增加了 2.06 倍。显然,SMEDDS 可能是改善 pH 依赖性溶解度药物口服吸收的有效方法。