Centre for Drug Research, Universiti Sains Malaysia, Penang, Malaysia.
Drug Dev Ind Pharm. 2010 Jun;36(6):735-45. doi: 10.3109/03639040903460446.
The aim of this study was to prepare a lipid-based self-microemulsifying drug delivery system (SMEDDS) to increase the solubility and oral bioavailability of a poorly water-soluble compound, buparvaquone (BPQ).
The solubility of BPQ was determined in various vehicles, and pseudo-ternary phase diagrams were constructed to determine the microemulsion region. A series of formulations with different compositions were selected in the microemulsion region for assessment of self-emulsification time and droplet size. The optimized SMEDDS formulation was used for in vitro dissolution and pharmacokinetic studies in rabbits.
The optimum formulation of SMEDDS consisted of Capryol 90 (9.82%), Cremophor EL (70.72%), Labrasol (17.68%), and BPQ (1.78%). Emulsification time and the mean droplet size were found to be 1 minute and 18.0 +/- 0.25 nm, respectively, for the optimum formulation. The cumulative percentage of drug released in 90 minutes was 100% in both SGF and SIF. The calculated absolute oral bioavailability for BPQ was found to be 40.10%.
The optimum SMEDDS formulation was increased the rate and extent of absorption of BPQ. The formulation is suitable for oral administration of BPQ. It would be useful to conduct efficacy studies of BPQ in diseased animal models and subsequently for toxicokinetics studies.
本研究旨在制备一种基于脂质的自微乳给药系统(SMEDDS),以提高一种水溶性差的化合物布帕喹酮(BPQ)的溶解度和口服生物利用度。
测定 BPQ 在各种载体中的溶解度,并构建伪三元相图以确定微乳液区域。在微乳液区域中选择一系列具有不同组成的配方,以评估自乳化时间和液滴大小。将优化的 SMEDDS 配方用于兔体内的体外溶解和药代动力学研究。
SMEDDS 的最佳配方由 Capryol 90(9.82%)、Cremophor EL(70.72%)、Labrasol(17.68%)和 BPQ(1.78%)组成。最佳配方的乳化时间和平均液滴大小分别为 1 分钟和 18.0 +/- 0.25nm。90 分钟内,在 SGF 和 SIF 中药物的累积释放百分比均为 100%。BPQ 的绝对口服生物利用度计算值为 40.10%。
最佳 SMEDDS 配方提高了 BPQ 的吸收速度和程度。该配方适用于 BPQ 的口服给药。在疾病动物模型中进行 BPQ 的疗效研究,并随后进行毒代动力学研究将是有用的。