Institute of Pharmaceutical Technology, Goethe University, Frankfurt, 60438, Germany.
J Pharm Sci. 2013 Oct;102(10):3645-52. doi: 10.1002/jps.23666. Epub 2013 Jul 19.
The aim of the present series of experiments was to compare various in vitro tools including evaluation of formulations influence on solubility, various dissolution tests, and an updated, miniaturized transfer model to forecast the behavior of novel formulations of the poorly soluble, weakly basic model compound ketoconazole (KETO) after oral administration. A binary complex with hydroxypropyl-β-cyclodextrin (HP-β-CD) and a ternary formulation with HP-β-CD and Soluplus® were evaluated and their solubility, dissolution, and transfer behavior was compared with that of the pure drug. Binary and ternary formulations could significantly improve (p < 0.05) KETO solubility in all test media. Dissolution in media simulating the fasted stomach and the fed small intestine was almost complete for the pure drug and both complex formulations. By contrast, in pH 6.5 FaSSIF, dissolution of the pure drug was less than 10%. Both formulations resulted in significantly higher KETO release (p < 0.05) in this test medium (32%/95% release from the binary/ternary formulation). In the transfer experiments, the ternary complex showed the best performance with respect to stabilizing a supersaturated solution and inhibiting precipitation of KETO. Overall, the miniaturized transfer model appeared to be the best single tool for rank-ordering formulations.
本系列实验旨在比较各种体外工具,包括评估制剂对溶解度的影响、各种溶解试验以及经过更新的小型转移模型,以预测在口服后,新型难溶性弱碱性模型化合物酮康唑(KETO)制剂的行为。与纯药物相比,我们评估了 HP-β-CD 的二元复合物和 HP-β-CD 与 Soluplus®的三元配方,并比较了它们的溶解度、溶解和传递行为。二元和三元配方可显著提高(p<0.05)所有测试介质中 KETO 的溶解度。纯药物和两种复合物在模拟空腹胃和进食小肠的介质中的溶解几乎完全。相比之下,在 pH 6.5 FaSSIF 中,纯药物的溶解不到 10%。这两种配方都导致在该测试介质中 KETO 释放显著增加(p<0.05)(从二元/三元配方中释放 32%/95%)。在转移实验中,三元复合物在稳定过饱和溶液和抑制 KETO 沉淀方面表现出最佳性能。总体而言,小型转移模型似乎是对配方进行排序的最佳单一工具。