Department of Pharmaceutics and Analytical Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
J Pharm Biomed Anal. 2011 Apr 28;55(1):16-22. doi: 10.1016/j.jpba.2010.12.037. Epub 2011 Jan 13.
A capillary electrophoresis-based method to characterize a PEGylated liposomal drug formulation of the anti-cancer agent oxaliplatin was developed. Pharmaceutical characterization in terms of determination of the free and total oxaliplatin concentrations in the liposomal formulation was successfully performed allowing calculation of the percentage of encapsulated drug and encapsulation efficiency. The trapping efficiency was likewise calculated. The capillary electrophoresis method allowed liposome characterization in the intended formulation media (sucrose solution with low electrolyte concentration), and the attained results were consistent with inductively coupled plasma mass spectrometry measurements. Accelerated drug leakage studies were initiated by the sonication of the PEGylated formulation, using an ultrasound probe, subsequently the drug leakage was determined by capillary electrophoresis. The results obtained with the PEGylated liposomes demonstrate that capillary electrophoresis may be a useful tool for the characterization of liposomal drug formulations.
建立了一种基于毛细管电泳的方法来表征抗癌药物奥沙利铂的 PEG 化脂质体药物制剂。成功地进行了药物制剂的药物特性分析,包括测定脂质体制剂中游离和总奥沙利铂的浓度,从而计算出包裹药物的百分比和包裹效率。同样计算了包封效率。毛细管电泳法允许在预期的制剂介质(低电解质浓度的蔗糖溶液)中对脂质体进行表征,并且所获得的结果与电感耦合等离子体质谱测量结果一致。通过使用超声探头对 PEG 化制剂进行超声处理来启动药物加速泄漏研究,随后通过毛细管电泳法测定药物泄漏。PEG 化脂质体的结果表明,毛细管电泳法可能是一种有用的工具,可用于表征脂质体药物制剂。