Publication Type Journal Article
Title Vanadium and cancer treatment: Antitumoral mechanisms of three oxidovanadium(IV) complexes on a human osteosarcoma cell line
Authors I. E. Leon N. Butenko A. L. Di Virgilio C. I. Muglia E. J. Baran Isabel Cavaco S. B. Etcheverry
Groups
Journal JOURNAL OF INORGANIC BIOCHEMISTRY
Year 2014
Month May
Volume 134
Number
Pages 106-117
Abstract We report herein the antitumor actions of three oxidovanadium(IV) complexes on MG-63 human osteosarcoma cell line. The three complexes: VO(oda), VO(oda)bipy and VO(oda)phen (oda = oxodiacetate), caused a concentration dependent inhibition of cell viability. The antiproliferative action of VO(oda)phen could be observed in the whole range of concentrations (at 2.5 mu M), while VO(oda)bipy and VO(oda) showed a decrease of cell viability only at higher concentrations (at 50 and 75 mu M, respectively) (p<0.01). Moreover, VO(oda)phen caused a decrease of lysosomal and mitochondrial activities at 2.5 mu M, while VO(oda) and VO(oda)bipy affected neutral red uptake and mitochondrial metabolism at 50 mu M (p <0.01). On the other hand, no DNA damage studied by the Comet assay could be observed in MG-63 cells treated with VO(oda) at 2.5-10 mu M. Nevertheless, VO(oda)phen and VO(oda)bipy induced DNA damage at 2.5 and 10 mu M, respectively (p < 0.01). The generation of reactive oxygen species increased at 10 mu M of VO(oda)phen and only at 100 mu M of VO(oda) and VO(oda)bipy (p <0.01). Besides, VO(oda)phen and VO(oda)bipy triggered apoptosis as determined by externalization of the phosphatidylserine. The determination of DNA cleavage by agarose gel electrophoresis showed that the ability of VO(oda)(bipy) is similar to that of VO(oda), while VO(oda)(phen) showed the highest nuclease activity in this series. Overall, our results showed a good relationship between the bioactivity of the complexes and their structures since VO(oda)phen presented the most potent antitumor action in human osteosarcoma cells followed by VO(oda)bipy and then by VO(oda) according to the number of intercalating heterocyclic moieties. (c) 2013 Elsevier Inc. All rights reserved.
DOI http://dx.doi.org/10.1016/j.jinorgbio.2013.10.009
ISBN
Publisher
Book Title
ISSN 0162-0134
EISSN 1873-3344
Conference Name
Bibtex ID ISI:000334324500014
Observations
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