Literature DB >> 30106571

NO Releasing and Anticancer Properties of Octahedral Ruthenium-Nitrosyl Complexes with Equatorial 1 H-Indazole Ligands.

Ewelina Orlowska1, Maria V Babak2, Orsolya Dömötör3, Eva A Enyedy3, Peter Rapta4, Michal Zalibera4, Lukáš Bučinský4, Michal Malček4,5, Chinju Govind6, Venugopal Karunakaran6, Yusuf Chouthury Shaik Farid7, Tara E McDonnell8, Dominique Luneau9, Dominik Schaniel10, Wee Han Ang2, Vladimir B Arion1.   

Abstract

With the aim of enhancing the biological activity of ruthenium-nitrosyl complexes, new compounds with four equatorially bound indazole ligands, namely, trans-[RuCl(Hind)4(NO)]Cl2·H2O ([3]Cl2·H2O) and trans-[RuOH(Hind)4(NO)]Cl2·H2O ([4]Cl2·H2O), have been prepared from trans-[Ru(NO2)2(Hind)4] ([2]). When the pH-dependent solution behavior of [3]Cl2·H2O and [4]Cl2·H2O was studied, two new complexes with two deprotonated indazole ligands were isolated, namely [RuCl(ind)2(Hind)2(NO)] ([5]) and [RuOH(ind)2(Hind)2(NO)] ([6]). All prepared compounds were comprehensively characterized by spectroscopic (IR, UV-vis, 1H NMR) techniques. Compound [2], as well as [3]Cl2·2(CH3)2CO, [4]Cl2·2(CH3)2CO, and [5]·0.8CH2Cl2, the latter three obtained by recrystallization of the first isolated compounds (hydrates or anhydrous species) from acetone and dichloromethane, respectively, were studied by X-ray diffraction methods. The photoinduced release of NO in [3]Cl2 and [4]Cl2 was investigated by cyclic voltammetry and resulting paramagnetic NO species were detected by EPR spectroscopy. The quantum yields of NO release were calculated and found to be low (3-6%), which could be explained by NO dissociation and recombination dynamics, assessed by femtosecond pump-probe spectroscopy. The geometry and electronic parameters of Ru species formed upon NO release were identified by DFT calculations. The complexes [3]Cl2 and [4]Cl2 showed considerable antiproliferative activity in human cancer cell lines with IC50 values in low micromolar or submicromolar concentration range and are suitable for further development as potential anticancer drugs. p53-dependence of Ru-NO complexes [3]Cl2 and [4]Cl2 was studied and p53-independent mode of action was confirmed. The effects of NO release on the cytotoxicity of the complexes with or without light irradiation were investigated using NO scavenger carboxy-PTIO.

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Year:  2018        PMID: 30106571     DOI: 10.1021/acs.inorgchem.8b01341

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  4 in total

1.  A novel Pt(iv) mono azido mono triazolato complex evolves azidyl radicals following irradiation with visible light.

Authors:  Kezi Yao; Arnau Bertran; Jacques Morgan; Samuel M Hare; Nicholas H Rees; Alan M Kenwright; Katharina Edkins; Alice M Bowen; Nicola J Farrer
Journal:  Dalton Trans       Date:  2019-05-15       Impact factor: 4.390

2.  A divergent mode of activation of a nitrosyl iron complex with unusual antiangiogenic activity.

Authors:  Edinilton Muniz Carvalho; Lisa A Ridnour; Florêncio Sousa Gouveia Júnior; Pedro Henrique Bezerra Cabral; Nilberto Robson Falcão do Nascimento; David A Wink; Douglas W Franco; Mayara Jane Campos de Medeiros; Daniel de Lima Pontes; Elisane Longhinotti; Tércio de Freitas Paulo; Vania Bernardes-Génisson; Remi Chauvin; Eduardo Henrique Silva Sousa; Luiz Gonzaga de França Lopes
Journal:  J Inorg Biochem       Date:  2020-06-20       Impact factor: 4.155

3.  The Ruthenium Nitrosyl Moiety in Clusters: Trinuclear Linear μ-Hydroxido Magnesium(II)-Diruthenium(II), μ3-Oxido Trinuclear Diiron(III)-Ruthenium(II), and Tetranuclear μ4-Oxido Trigallium(III)-Ruthenium(II) Complexes.

Authors:  Iryna Stepanenko; Pavlo Mizetskyi; Ewelina Orlowska; Lukáš Bučinský; Michal Zalibera; Barbora Vénosová; Martin Clémancey; Geneviève Blondin; Peter Rapta; Ghenadie Novitchi; Wolfgang Schrader; Dominik Schaniel; Yu-Sheng Chen; Martin Lutz; Jozef Kožíšek; Joshua Telser; Vladimir B Arion
Journal:  Inorg Chem       Date:  2021-12-28       Impact factor: 5.165

4.  Multistep Photochemical Reactions of Polypyridine-Based Ruthenium Nitrosyl Complexes in Dimethylsulfoxide.

Authors:  Nataliia Marchenko; Pascal G Lacroix; Valerii Bukhanko; Marine Tassé; Carine Duhayon; Martial Boggio-Pasqua; Isabelle Malfant
Journal:  Molecules       Date:  2020-05-08       Impact factor: 4.411

  4 in total

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