Influence of Hydrogen-Bonding Substituents on the Cytotoxicity of RAPTA Compounds

A new series of organometallic ruthenium(II)-arene compounds of the type RuCl2(η6-arene)(phosphine) (phosphine = 1,3,5-triaza-7-phosphaadamantane, PTA, and 3,7-diacetly-1,3,7-triaza-5-phosphabicyclo[3.3.1]nonane, DAPTA) with different potential hydrogen-bonding functionalities on the arene ligand ha...

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Published inOrganometallics Vol. 25; no. 3; pp. 756 - 765
Main Authors Scolaro, Claudine, Geldbach, Tilmann J, Rochat, Sébastien, Dorcier, Antoine, Gossens, Christian, Bergamo, Alberta, Cocchietto, Moreno, Tavernelli, Ivano, Sava, Gianni, Rothlisberger, Ursula, Dyson, Paul J
Format Journal Article
LanguageEnglish
Published American Chemical Society 30.01.2006
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Summary:A new series of organometallic ruthenium(II)-arene compounds of the type RuCl2(η6-arene)(phosphine) (phosphine = 1,3,5-triaza-7-phosphaadamantane, PTA, and 3,7-diacetly-1,3,7-triaza-5-phosphabicyclo[3.3.1]nonane, DAPTA) with different potential hydrogen-bonding functionalities on the arene ligand have been prepared and studied for their antitumor activity. Cell viability studies using the TS/A mouse adenocarcinoma cancer cell line and the nontumorigenic HBL-100 human mammary cell line, combined with uptake determinations, are compared to the nonfunctionalized analogues, previously shown to be active on solid metastasizing tumors. The reactivity of the functionalized RAPTA compounds with a 14-mer oligonucleotide (established by mass spectrometry) has been rationalized by DFT calculations, which indicate that environmental factors are important.
Bibliography:istex:047CABB5141D5364979FF858BEFDC720BEF7B2DF
ark:/67375/TPS-MLK2LQM7-2
ISSN:0276-7333
1520-6041
DOI:10.1021/om0508841