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顺铂纳米胶囊对卵巢癌细胞的高细胞毒性取决于小窝介导的内吞作用摄取。

High cytotoxicity of cisplatin nanocapsules in ovarian carcinoma cells depends on uptake by caveolae-mediated endocytosis.

作者信息

Hamelers Irene H L, Staffhorst Rutger W H M, Voortman Jarno, de Kruijff Ben, Reedijk Jan, van Bergen en Henegouwen Paul M P, de Kroon Anton I P M

机构信息

Biochemistry of Membranes, Bijvoet Institute, Department of Cellular Architecture and Dynamics, Utrecht University, Utrecht, The Netherlands.

出版信息

Clin Cancer Res. 2009 Feb 15;15(4):1259-68. doi: 10.1158/1078-0432.CCR-08-1702.

Abstract

PURPOSE

Cisplatin nanocapsules, nanoprecipitates of cisplatin encapsulated in phospholipid bilayers, exhibit increased in vitro toxicity compared with the free drug toward a panel of human ovarian carcinoma cell lines. To elucidate the mechanism of cell killing by nanocapsules and to understand the cell line dependence of nanocapsule efficacy, the route of uptake and the intracellular fate of the nanocapsules were investigated.

EXPERIMENTAL DESIGN

Intracellular platinum accumulation and cisplatin-DNA-adduct formation were measured in cell lines that differ in sensitivity to cisplatin nanocapsules. Confocal fluorescence microscopy in combination with down-regulation with small interfering RNA was used to map the route of cellular uptake of nanocapsules containing fluorescein-labeled cisplatin.

RESULTS

In sensitive cell lines, cisplatin from nanocapsules is taken up much more efficiently than the free compound. In IGROV-1 cells, the increased platinum accumulation results in augmented cisplatin-DNA-adduct formation. Confocal fluorescence microscopy revealed that the uptake of nanocapsules is energy dependent. Colocalization with markers of early and late endosomes indicated uptake via endocytosis. Down-regulation of caveolin-1 with small interfering RNA inhibited the uptake and cytotoxic effect of nanocapsules in IGROV-1 cells. Ovarian carcinoma cells, in which the nanocapsules are less effective than in IGROV-1 cells, do not internalize the nanocapsules (OVCAR-3) or accumulate them in an endocytic compartment after clathrin-mediated endocytosis (A2780).

CONCLUSIONS

The high cytotoxicity of cisplatin nanocapsules requires caveolin-1-dependent endocytosis that is followed by release of the drug from a late endosomal/lysosomal compartment and cisplatin-DNA-adduct formation. The findings may be applied in predicting the efficacy of nanoparticulate anticancer drug delivery systems in treating different tumor types.

摘要

目的

顺铂纳米胶囊是包裹在磷脂双分子层中的顺铂纳米沉淀物,与游离药物相比,对一组人卵巢癌细胞系的体外毒性有所增加。为了阐明纳米胶囊的细胞杀伤机制,并了解纳米胶囊疗效的细胞系依赖性,对纳米胶囊的摄取途径和细胞内命运进行了研究。

实验设计

在对顺铂纳米胶囊敏感性不同的细胞系中测量细胞内铂积累和顺铂 - DNA加合物的形成。共聚焦荧光显微镜结合小干扰RNA下调用于绘制含有荧光素标记顺铂的纳米胶囊的细胞摄取途径。

结果

在敏感细胞系中,纳米胶囊中的顺铂比游离化合物摄取效率高得多。在IGROV - 1细胞中,铂积累增加导致顺铂 - DNA加合物形成增加。共聚焦荧光显微镜显示纳米胶囊的摄取是能量依赖性的。与早期和晚期内体标记物的共定位表明通过内吞作用摄取。用小干扰RNA下调小窝蛋白 - 1抑制了纳米胶囊在IGROV - 1细胞中的摄取和细胞毒性作用。纳米胶囊效果不如IGROV - 1细胞的卵巢癌细胞不摄取纳米胶囊(OVCAR - 3)或在网格蛋白介导的内吞作用后将它们积累在内吞小室中(A2780)。

结论

顺铂纳米胶囊的高细胞毒性需要小窝蛋白 - 1依赖性内吞作用,随后药物从晚期内体/溶酶体区室释放并形成顺铂 - DNA加合物。这些发现可能适用于预测纳米颗粒抗癌药物递送系统在治疗不同肿瘤类型中的疗效。

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