Papagiannaros Aristarchos, Dimas Kostas, Papaioannou George Th, Demetzos Costas
Department of Pharmaceutical Technology, School of Pharmacy, National and Kapodistrian University of Athens, Panepistimiopolis, 15771 Zografou Athens, Greece.
Int J Pharm. 2005 Sep 30;302(1-2):29-38. doi: 10.1016/j.ijpharm.2005.05.039.
Liposomes composed of HePC:EPC:SA 10:10:0.1 (molar ratio) (1) and EPC:SA 10:0.1 (molar ratio) (2) were prepared and were used for incorporating the doxorubicin-PAMAM complex (3:1 molar ratio) (3). The doxorubicin-PAMAM complex was attached to liposomes and the incorporation efficiency was 91 and 95% for 1 and 2, respectively. The incorporation efficiency for doxorubicin into PAMAM was almost 97% while doxorubicin to PAMAM molar ratio was 3.56+/-0.04. The release rate of doxorubicin as doxorubicin-PAMAM complex from liposomes 1 and 2 and from the complex 3, was studied using buffers and 50% RPMI cell culture medium at 37 and 25 degrees C. The low release rate of doxorubicin as well as the high incorporation efficiency of doxorubicin-PAMAM complex into liposomes are considered as beneficial factors concerning the activity of doxorubicin. The cytotoxic activity of the liposomal formulation 1 incorporating doxorubicin-PAMAM complex, based on doxorubicin activity, was compared to that of 2 incorporating doxorubicin-PAMAM complex and to that of 3. The results showed that complex 1 was the most active formulation against all cancer cell lines compared to that of 2 and 3. Liposomal formulations composed of lipids and of a drug-dendrimer complex could be characterized as modulatory liposomal controlled release system (MLCRS), and could provide benefits to the delivery of drugs and modulate their release.
制备了由HePC:EPC:SA 10:10:0.1(摩尔比)(1)和EPC:SA 10:0.1(摩尔比)(2)组成的脂质体,并用于包封阿霉素-PAMAM复合物(摩尔比3:1)(3)。阿霉素-PAMAM复合物连接到脂质体上,1和2的包封效率分别为91%和95%。当阿霉素与PAMAM的摩尔比为3.56±0.04时,阿霉素进入PAMAM的包封效率几乎为97%。使用缓冲液和50% RPMI细胞培养基在37℃和25℃下研究了阿霉素作为阿霉素-PAMAM复合物从脂质体1和2以及复合物3中的释放速率。阿霉素的低释放速率以及阿霉素-PAMAM复合物在脂质体中的高包封效率被认为是与阿霉素活性相关的有利因素。基于阿霉素活性,将包封阿霉素-PAMAM复合物的脂质体制剂1的细胞毒性活性与包封阿霉素-PAMAM复合物的2以及3的细胞毒性活性进行了比较。结果表明,与2和3相比,复合物1是对所有癌细胞系最具活性的制剂。由脂质和药物-树枝状聚合物复合物组成的脂质体制剂可被表征为调节性脂质体控释系统(MLCRS),并且可为药物递送提供益处并调节其释放。