Kim H J, Yoon K A, Hahn M, Park E S, Chi S C
College of Pharmacy, Sungkyunkwan University, Suwon, Korea.
Drug Dev Ind Pharm. 2000 May;26(5):523-9. doi: 10.1081/ddc-100101263.
A new self-microemulsifying drug delivery system (SMEDDS) was developed to increase the dissolution rate, solubility, and, ultimately, bioavailability of a poorly water soluble drug, idebenone. Pseudoternary phase diagrams were used to evaluate the self-microemulsification existence area, and the release rate of idebenone was investigated. The mixtures consisting of Labrafac hydro or Labrafil 2609 (HLB values > 4) with the surfactant (Labrasol containing 80% Transcutol) and cosurfactant (Plurol oleique WL 1173) were found to be optimum formulations. Using the SMEDDS formulations of 5% to 20% of Labrafac hydro or Labrafil 2609 in combination with the surfactant/cosurfactant mixing ratio of 3, the microemulsion existence field was wider compared to the other SMEDDS formulations due to high affinity for the continuous phase. The in vitro dissolution rate of idebenone from SMEDDS was more than twofold faster compared with that of tablets. The developed SMEDDS formulation can be used as a possible alternative to traditional oral formulations of idebenone to improve its bioavailability.
开发了一种新型自微乳化药物递送系统(SMEDDS),以提高难溶性药物艾地苯醌的溶解速率、溶解度,并最终提高其生物利用度。使用伪三元相图评估自微乳化存在区域,并研究了艾地苯醌的释放速率。发现由Labrafac hydro或Labrafil 2609(HLB值>4)与表面活性剂(含80%二甲基亚砜的Labrasol)和助表面活性剂(聚甘油油酸酯WL 1173)组成的混合物是最佳配方。使用5%至20%的Labrafac hydro或Labrafil 2609的SMEDDS配方,结合3的表面活性剂/助表面活性剂混合比例,由于对连续相的高亲和力,与其他SMEDDS配方相比,微乳液存在区域更宽。与片剂相比,艾地苯醌从SMEDDS的体外溶解速率快两倍以上。所开发的SMEDDS配方可作为艾地苯醌传统口服制剂的一种可能替代方案,以提高其生物利用度。