Department of Pharmaceutical Technology and Biopharmacy, Faculty of Pharmacy, 2 Dunav Str., 1000 Sofia, Bulgaria.
Int J Pharm. 2012 Oct 15;436(1-2):258-64. doi: 10.1016/j.ijpharm.2012.06.030. Epub 2012 Jun 18.
Paclitaxel is an antineoplastic drug used against a variety of tumors, but its low aqueous solubility and active removal caused by P-glycoprotein in the intestinal cells hinder its oral administration. In our study, new type of stabilized Pluronic micelles were developed and evaluated as carriers for paclitaxel delivery via oral or intravenous route. The pre-stabilized micelles were loaded with paclitaxel by simple solvent/evaporation technique achieving high encapsulation efficiency of approximately 70%. Gastrointestinal transit of the developed micelles was evaluated by oral administration of rhodamine-labeled micelles in rats. Our results showed prolonged gastrointestinal residence of the marker encapsulated into micelles, compared to a solution containing free marker. Further, the oral administration of micelles in mice showed high area under curve of micellar paclitaxel (similar to the area of i.v. Taxol(®)), longer mean residence time (9-times longer than i.v. Taxol(®)) and high distribution volume (2-fold higher than i.v. Taxol(®)) indicating an efficient oral absorption of paclitaxel delivered by micelles. Intravenous administration of micelles also showed a significant improvement of pharmacokinetic parameters of micellar paclitaxel vs. Taxol(®), in particular higher area under curve (1.2-fold), 5-times longer mean residence time and lower clearance, indicating longer systemic circulation of the micelles.
紫杉醇是一种用于多种肿瘤的抗肿瘤药物,但由于其在肠道细胞中的低水溶性和 P-糖蛋白的主动清除作用,限制了其口服给药。在我们的研究中,开发了新型稳定的 Pluronic 胶束并将其评估为通过口服或静脉途径递送紫杉醇的载体。通过简单的溶剂/蒸发技术将预稳定的胶束加载紫杉醇,实现了约 70%的高包封效率。通过在大鼠中口服罗丹明标记的胶束来评估开发的胶束的胃肠道转运。我们的结果表明,与含有游离标记物的溶液相比,标记物包封在胶束中的胃肠道停留时间延长。此外,在小鼠中口服胶束给药显示出高的米曲醇紫杉醇的曲线下面积(与静脉注射 Taxol(®)相似),更长的平均滞留时间(比静脉注射 Taxol(®)长 9 倍)和高分布体积(比静脉注射 Taxol(®)高 2 倍),表明米曲醇紫杉醇通过胶束的口服吸收效率高。静脉注射胶束也显示出米曲醇紫杉醇与 Taxol(®)相比,药代动力学参数的显著改善,特别是更高的曲线下面积(1.2 倍),5 倍更长的平均滞留时间和更低的清除率,表明胶束的系统循环时间更长。