Publication Type Journal Article
Title Cellular Uptake Mechanisms of an Antitumor Ruthenium Compound: The Endosomal/Lysosomal System as a Target for Anticancer Metal-Based Drugs
Authors Leonor Côrte-Real A. P. Alves de Matos Irina Alho Tânia S. Morais Ana Isabel Tomaz M. Helena Garcia Isabel Santos Manuel Bicho Fernanda M. Marques
Groups
Journal MICROSCOPY AND MICROANALYSIS
Year 2013
Month October
Volume 19
Number 5
Pages 1122-1130
Abstract Previous studies have described promising antitumor activity of an organometallic Ru(II) complex, eta(5)-Cyclopentadienyl(2,2 -bipyridyl)(triphenylphosphane) Ruthenium(II) triflate ([(eta(5)-C5H5)Ru(2,2 -bipyridyl)(PPh3)][CF3SO3]) herein designated as TM34. Its broad spectrum of activity against a panel of human tumor cell lines and high antiproliferative efficiency prompted us to focus on its mode of action. We present herein results obtained with two human tumor cell lines A2780 and MDAMB231 on the compound distribution within the cell, the mechanism of its activity, and its cellular targets. The prospective metallodrug TM34 revealed: (a) fast antiproliferative effects even at short incubation times for both cell lines; (b) preferential localization at the cell membrane and cytosol; (c) cellular activity by a temperature-dependent process, probably macropinocytosis; (d) inhibition of a lysosomal enzyme, acid phosphatase, in a dose-dependent mode; and (e) disruption and vesiculation of the Golgi apparatus, which suggest the involvement of the endosomal/lysosomal system in its mode of action. These results are essential to elucidate the basis for the cytotoxic activity and mechanism of action of this Ru-II(eta(5)-cyclopentadienyl) complex.
DOI http://dx.doi.org/10.1017/S143192761300175X
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Publisher
Book Title
ISSN 1431-9276
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Conference Name
Bibtex ID ISI:000324550900003
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