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

Files

Access status: Embargo until 2050-01-01 , 1259.full.pdf (883.26 KB)

Publication date

2009

Authors

Hamelers, I.H.L.ISNI 0000000397141848
Staffhorst, R.W.H.M.
Voortman, J.ISNI 0000000387521150
de Kruijff, B.ISNI 0000000040773957
Reedijk, J.
van Bergen En Henegouwen, Paul M PORCID 0000-0001-6050-9042ISNI 0000000387765753
de Kroon, A.I.P.M.ISNI 0000000390026724

Editors

Advisors

Supervisors

DOI

Document Type

Article

License

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 RNAwas used to map the route of cellular uptake of nanocapsules containing fluorescein-labeled cisplatin. Results: In sensitive cell lines, cisplatin fromnanocapsules is takenupmuchmore efficiently than the free compound. In IGROV-1cells, 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-1cells. 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 clathrinmediated 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.

Keywords

Citation

Hamelers, I H L, Staffhorst, R W H M, Voortman, J, de Kruijff, B, Reedijk, J, van Bergen en Henegouwen, P M P & de Kroon, A I P M 2009, 'High cytotoxicity of cisplatin nanocapsules in ovarian carcinoma cells depends on uptake by caveolae-mediated endocytosis', Clinical Cancer Research, vol. 15, no. 4, pp. 1259-1268.