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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effects of liposome-encapsulated drugs on macrophages: comparative activity of the diamidine 4',6-diamidino-2-phenylindole and the phenanthridinium salts ethidium bromide and propidium iodide
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Effects of liposome-encapsulated drugs on macrophages: comparative activity of the diamidine 4',6-diamidino-2-phenylindole and the phenanthridinium salts ethidium bromide and propidium iodide

机译:脂质体包裹药物对巨噬细胞的影响:二am 4',6-二mid基-2-苯基吲哚与菲啶鎓盐溴化乙锭和碘化丙锭的比较活性

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摘要

Liposomes can be used for the intracellular delivery of drugs into macrophages. Previously, we developed a liposomemediated macrophage 'suicide' technique based on the intraphagocytic accumulation of the liposomally delivered bisphosphonate clodronate. Later we found that the diamidine propamidine is even more effective in this approach. In the present study it is shown that liposome-encapsulated 4',6-diamidino-2-phenylindole (L-DAPI), another well known DNA-binding diamidine, is the most effective drug in killing liver macrophages (Kupffer cells), when intravenously administered in rat. Compared to liposome-encapsulated propamidine (L-propamidine) it showed about 10-fold more activity on a molar basis. Furthermore, L-DAPI was found to induce cell death by inducing apoptosis. The structurally strongly related phenanthridinium salts ethidium bromide (EB) and propidium iodide (PI) exert marked differences in their efficacy. Whereas liposome-encapsulated PI (L-PI) was about 5 times more active in killing macrophages than L-propamidine, liposome-encapsulated EB (L-EB) showed a strongly reduced activity (10 times less than L-PI). As is shown here, PI remains mainly encapsulated in liposomes, while substantial amounts of EB leak out of liposomes. This may very well explain the differences in in vivo activity between L-EB and L-PI.
机译:脂质体可用于药物向巨噬细胞的细胞内递送。以前,我们基于脂质体递送的双膦酸盐氯膦酸盐的吞噬细胞内积累,开发了脂质体介导的巨噬细胞“自杀”技术。后来,我们发现二am丙idine在这种方法中甚至更有效。在本研究中,脂质体包裹的4',6-二dia基-2-苯基吲哚(L-DAPI)(另一种众所周知的DNA结合二di)是杀死肝巨噬细胞(库普弗细胞)时最有效的药物。在大鼠中静脉内给药。与脂质体包裹的丙am(L-丙prop)相比,它的摩尔活性高约10倍。此外,发现L-DAPI通过诱导凋亡来诱导细胞死亡。结构上密切相关的菲啶鎓盐溴化乙锭(EB)和碘化丙啶(PI)在功效上存在显着差异。脂质体包裹的PI(L-PI)在杀死巨噬细胞方面的活性是L-丙about的5倍左右,而脂质体包裹的EB(L-EB)则活性大大降低(比L-PI低10倍)。如此处所示,PI仍主要包裹在脂质体内,而大量EB则从脂质体中泄漏出来。这可以很好地解释L-EB和L-PI之间体内活性的差异。

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