[en] An efficient synthetic protocol was devised for the preparation of five cationic ruthenium–arene complexes bearing imidazol(in)ium-2-dithiocarboxylate ligands from the [RuCl2(p-cymene)]2 dimer and 2 equiv of an NHC·CS2 zwitterion. The reactions proceeded cleanly and swiftly in dichloromethane at room temperature to afford the expected [RuCl(p-cymene)(S2C·NHC)]Cl products in quantitative yields. When the [RuCl2(p-cymene)]2 dimer was reacted with only 1 equiv of a dithiolate betaine under the same experimental conditions, a set of five bimetallic compounds with the generic formula [RuCl(p-cymene)(S2C·NHC)][RuCl3(p-cymene)] was obtained in quantitative yields. These novel, dual anionic and cationic ruthenium–arene complexes were fully characterized by various analytical techniques. NMR titrations showed that the chelation of the dithiocarboxylate ligands to afford [RuCl(p-cymene)(S2C·NHC)]+ cations was quantitative and irreversible. Conversely, the formation of the [RuCl3(p-cymene)]− anion was limited by an equilibrium, and this species readily dissociated into Cl– anions and the [RuCl2(p-cymene)]2 dimer. The position of the equilibrium was strongly influenced by the nature of the solvent and was rather insensitive to the temperature. Two monometallic and two bimetallic complexes cocrystallized with water, and their molecular structures were solved by X-ray diffraction analysis. Crystallography revealed the existence of strong interactions between the azolium ring protons of the cationic complexes and neighboring donor groups from the anions or the solvent. The various compounds under investigation were highly soluble in water. They were all strongly cytotoxic against K562 cancer cells. Furthermore, with a selectivity index of 32.1, the [RuCl(p-cymene)(S2C·SIDip)]Cl complex remarkably targeted the erythroleukemic cells vs mouse splenocytes.
Kuhn, N.; Bohnen, H.; Henkel, G. About the Reaction of Carbon Disulfide Carbene Adducts with Bromine and Iodine. Z. Naturforsch., B: J. Chem. Sci. 1994, 49, 1473-1480, 10.1515/znb-1994-1105
Enders, D.; Breuer, K.; Runsink, J.; Teles, J. H. Chemical reactions of the stable carbene 1,3,4-triphenyl-4,5-dihydro-1H-1,2,4-triazol-5-ylidene. Liebigs Ann. Chem. 1996, 1996, 2019-2028, 10.1002/jlac.199619961212
Kuhn, N.; Niquet, E.; Steimann, M.; Walker, I. Methoxyalkyl-functionalized 2,3-dihydroimidazol-2-ylidenes. Z. Naturforsch., B: J. Chem. Sci. 1999, 54, 1181-1187, 10.1515/znb-1999-0915
Sereda, O.; Blanrue, A.; Wilhelm, R. Enantiopure imidazolinium-dithiocarboxylates as highly selective novel organocatalysts. Chem. Commun. 2009, 1040-1042, 10.1039/B817991C
Dagmara Konieczna, D.; Blanrue, A.; Wilhelm, R. Investigation of Imidazol(in)ium-dithiocarboxylates as Sensors for the Detection of Mercury(II) and Silver(I) Ions. Z. Naturforsch., B: J. Chem. Sci. 2014, 69, 596, 10.5560/znb.2014-4014
Delaude, L.; Demonceau, A.; Wouters, J. Assessing the Potentials of Zwitterionic NHC·CS2Adducts for Probing the Stereoelectronic Parameters of N-Heterocyclic Carbenes. Eur. J. Inorg. Chem. 2009, 1882-1891, 10.1002/ejic.200801110
Delaude, L. Betaine Adducts of N-Heterocyclic Carbenes: Synthesis, Properties, and Reactivity. Eur. J. Inorg. Chem. 2009, 1681-1699, 10.1002/ejic.200801227
Beltrán, T. F.; Delaude, L. Recent Advances in Small Clusters and Polymetallic Assemblies Based on Transition Metals and Dithiocarboxylate Zwitterions Derived from N-Heterocyclic Carbenes. J. Cluster Sci. 2017, 28, 667-678, 10.1007/s10876-017-1174-4
Borer, L. L.; Kong, J. V. Octahedral nickel(II) dithiocarboxylates. Inorg. Chim. Acta 1986, 122, 145-148, 10.1016/S0020-1693(00)81631-X
Borer, L. L.; Kong, J. V.; Keihl, P. A.; Forkey, D. M. Metal complexes of 1,3-dimethylimidazolium-2-dithiocarboxylate. Inorg. Chim. Acta 1987, 129, 223-226, 10.1016/S0020-1693(00)86666-9
Delaude, L.; Sauvage, X.; Demonceau, A.; Wouters, J. Synthesis and Catalytic Evaluation of Ruthenium-Arene Complexes Generated Using Imidazol(in)ium-2-carboxylates and-Dithiocarboxylates. Organometallics 2009, 28, 4056-4064, 10.1021/om9002363
Naeem, S.; Thompson, A. L.; Delaude, L.; Wilton-Ely, J. D. E. T. Non-innocent Behaviour of Dithiocarboxylate Ligands Based on N-Heterocyclic Carbenes. Chem.-Eur. J. 2010, 16, 10971-10974, 10.1002/chem.201001235
Naeem, S.; Thompson, A. L.; White, A. J. P.; Delaude, L.; Wilton-Ely, J. D. E. T. Dithiocarboxylate Complexes of Ruthenium(II) and Osmium(II). Dalton Trans. 2011, 40, 3737-3747, 10.1039/c1dt10048c
Champion, M. J. D.; Solanki, R.; Delaude, L.; White, A. J. P.; Wilton-Ely, J. D. E. T. Synthesis and Catalytic Application of Palladium Imidazol(in)ium-2-dithiocarboxylate Complexes. Dalton Trans. 2012, 41, 12386-12394, 10.1039/c2dt31413d
Naeem, S.; Delaude, L.; White, A. J. P.; Wilton-Ely, J. D. E. T. The Use of Imidazolium-2-dithiocarboxylates in the Formation of Gold(I) Complexes and Gold Nanoparticles. Inorg. Chem. 2010, 49, 1784-1793, 10.1021/ic9021504
Beltrán, T. F.; Zaragoza, G.; Delaude, L. Mono-and bimetallic manganese-carbonyl complexes and clusters bearing imidazol(in)ium-2-dithiocarboxylate ligands. Dalton Trans. 2017, 46, 1779-1788, 10.1039/C6DT04780G
Beltrán, T. F.; Zaragoza, G.; Delaude, L. Synthesis, characterization, and gas-phase fragmentation of rhenium-carbonyl complexes bearing imidazol(in)ium-2-dithiocarboxylate ligands. Dalton Trans. 2016, 45, 18346-18355, 10.1039/C6DT03428D
Zhao, J.; Sun, H.; Liu, L.; Chang, W.; Li, J. Synthesis, Characterization and Potential Electrochemical Properties of Novel Mn-Re Dinuclear Complexes Containing N-Heterocyclic Carbene-Carbon Disulfide Ligands. Chem. J. Chin. Univ. 2014, 35, 68-74, 10.7503/cjcu20130364
Beltrán, T. F.; Zaragoza, G.; Delaude, L. Synthesis and complexation of superbulky imidazolium-2-dithiocarboxylate ligands. Dalton Trans. 2017, 46, 9036-9048, 10.1039/C7DT01889D
Neuba, A.; Ortmeyer, J.; Konieczna, D. D.; Weigel, G.; Flörke, U.; Henkel, G.; Wilhelm, R. Synthesis of New Copper(I) Based Linear 1-D-Coordination Polymers with Neutral Imidazolinium-dithiocarboxylate Ligands. RSC Adv. 2015, 5, 9217-9220, 10.1039/C4RA09033K
Ortmeyer, J.; Flörke, U.; Wilhelm, R.; Henkel, G.; Neuba, A. A Sophisticated Approach towards a New Class of Copper(I) Sulfur Cluster Complexes with Imidazolinium-dithiocarboxylate Ligands. Eur. J. Inorg. Chem. 2017, 3191-3197, 10.1002/ejic.201700328
Siemeling, U.; Memczak, H.; Bruhn, C.; Vogel, F.; Trager, F.; Baio, J. E.; Weidner, T. Zwitterionic Dithiocarboxylates Derived from N-Heterocyclic Carbenes: Coordination to Gold Surfaces. Dalton Trans. 2012, 41, 2986-2994, 10.1039/c2dt11976e
Shi, Y.-C.; Shi, Y. Synthesis, Crystal Structure and Electrochemical Study of (μ-κ2C:κ2S-NHC+-CS)[Fe2(CO)6]-Generated from the Reaction of NHC+-CS2-with Fe3(CO)12. Inorg. Chim. Acta 2015, 434, 92-96, 10.1016/j.ica.2015.04.024
Beltrán, T. F.; Zaragoza, G.; Delaude, L. Small iron-carbonyl clusters bearing imidazolium-2-trithioperoxycarboxylate ligands. Dalton Trans. 2017, 46, 13002-13009, 10.1039/C7DT03202A
Cabeza, J. A.; García-álvarez, P.; Hernández-Cruz, M. G. Reactions of CS2and C(S)NPh Adducts of N-Heterocyclic Carbenes with [Ru3(CO)12]: Remarkable Reactivity of These Betaines Involving One or Two C-S Bond Activation Processes. Eur. J. Inorg. Chem. 2012, 2928-2932, 10.1002/ejic.201200245
Delaude, L.; Demonceau, A. Retracing the evolution of monometallic ruthenium-arene catalysts for C-C bond formation. Dalton Trans. 2012, 41, 9257-9268, 10.1039/c2dt30293d
Méret, M.; Maj, A. M.; Demonceau, A.; Delaude, L. Ruthenium-arene catalysts bearing N-heterocyclic carbene ligands for olefin cyclopropanation and metathesis. Monatsh. Chem. 2015, 146, 1099-1105, 10.1007/s00706-015-1492-x
Sun, Y.; Machala, M. L.; Castellano, F. N. Controlled microwave synthesis of RuIIsynthons and chromophores relevant to solar energy conversion. Inorg. Chim. Acta 2010, 363, 283-287, 10.1016/j.ica.2009.07.028
Vock, C. A.; Dyson, P. J. Improved synthesis of the [Ru(η6-p-cymene)Cl3] anion: facile isolation under mild conditions. Z. Anorg. Allg. Chem. 2007, 633, 640-642, 10.1002/zaac.200600374
Robertson, D. R.; Stephenson, T. A. Cationic and anionic complexes of ruthenium(II) containing η6-arene ligands. J. Organomet. Chem. 1976, 116, C29-C30, 10.1016/S0022-328X(00)91803-5
Robertson, D. R.; Stephenson, T. A.; Arthur, T. Cationic, Neutral and Anionic Complexes of Ruthenium(II) containing η6-Arene Ligands. J. Organomet. Chem. 1978, 162, 121-136, 10.1016/S0022-328X(00)89087-7
Zelonka, R. A.; Baird, M. C. Benzene Complexes of Ruthenium(II). Can. J. Chem. 1972, 50, 3063-3072, 10.1139/v72-486
Bennett, M. A.; Smith, A. K. Arene ruthenium(II) complexes formed by dehydrogenation of cyclohexadienes with ruthenium(III) trichloride. J. Chem. Soc., Dalton Trans. 1974, 233-241, 10.1039/dt9740000233
Gould, R. O.; Jones, C. L.; Robertson, D. R.; Stephenson, T. A. Preparation, X-ray crystal structure analysis, and reactions of a novel, hydroxo-bridged, tetranuclear, π-arene ruthenium(II) quadrivalent cation [{(η6-C6H6)Ru(OH)}4](SO4)2·12H2O. J. Chem. Soc., Chem. Commun. 1977, 222-223, 10.1039/C39770000222
Hung, Y.; Kung, W.-J.; Taube, H. Aquo chemistry of monoarene complexes of osmium(II) and ruthenium(II). Inorg. Chem. 1981, 20, 457-463, 10.1021/ic50216a028
Stebler-Röthlisberger, M.; Hummel, W.; Pittet, P. A.; Bürgi, H. B.; Ludi, A.; Merbach, A. E. Triaqua(benzene)ruthenium(II) and triaqua(benzene)osmium(II): synthesis, molecular structure, and water-exchange kinetics. Inorg. Chem. 1988, 27, 1358-1363, 10.1021/ic00281a009
Süss-Fink, G. Water-soluble arene ruthenium complexes: From serendipity to catalysis and drug design. J. Organomet. Chem. 2014, 751, 2-19, 10.1016/j.jorganchem.2013.07.039
Patra, M.; Joshi, T.; Pierroz, V.; Ingram, K.; Kaiser, M.; Ferrari, S.; Spingler, B.; Keiser, J.; Gasser, G. DMSO-Mediated Ligand Dissociation: Renaissance for Biological Activity of N-Heterocyclic-[Ru(η6-arene)Cl2] Drug Candidates. Chem.-Eur. J. 2013, 19, 14768-14772, 10.1002/chem.201303341
Wang, F.; Chen, H.; Parsons, S.; Oswald, I. D. H.; Davidson, J. E.; Sadler, P. J. Kinetics of Aquation and Anation of Ruthenium(II) Arene Anticancer Complexes, Acidity and X-ray Structures of Aqua Adducts. Chem.-Eur. J. 2003, 9, 5810-5820, 10.1002/chem.200304724
Wang, F.; Habtemariam, A.; van der Geer, E. P. L.; Fernández, R.; Melchart, M.; Deeth, R. J.; Aird, R.; Guichard, S.; Fabbiani, F. P. A.; Lozano-Casal, P.; Oswald, I. D. H.; Jodrell, D. I.; Parsons, S.; Sadler, P. J. Controlling ligand substitution reactions of organometallic complexes: Tuning cancer cell cytotoxicity. Proc. Natl. Acad. Sci. U. S. A. 2005, 102, 18269, 10.1073/pnas.0505798102
Ang, W. H.; Daldini, E.; Scolaro, C.; Scopelliti, R.; Juillerat-Jeannerat, L.; Dyson, P. J. Development of Organometallic Ruthenium-Arene Anticancer Drugs That Resist Hydrolysis. Inorg. Chem. 2006, 45, 9006-9013, 10.1021/ic061008y
Scolaro, C.; Hartinger, C. G.; Allardyce, C. S.; Keppler, B. K.; Dyson, P. J. Hydrolysis study of the bifunctional antitumour compound RAPTA-C, [Ru(η6-p-cymene)Cl2(pta)]. J. Inorg. Biochem. 2008, 102, 1743-1748, 10.1016/j.jinorgbio.2008.05.004
Futera, Z.; Klenko, J.; Šponer, J. E.; Šponer, J.; Burda, J. V. Interactions of the "piano-stool" [ruthenium(II)(η6-arene)(en)Cl]+complexes with water and nucleobases; ab initio and DFT study. J. Comput. Chem. 2009, 30, 1758-1770, 10.1002/jcc.21179
Zhao, J.; Zhang, X.; Liu, H.; Xiong, Z.; Li, M.; Chen, T. Ruthenium arene complex induces cell cycle arrest and apoptosis through activation of P53-mediated signaling pathways. J. Organomet. Chem. 2019, 898, 120869, 10.1016/j.jorganchem.2019.07.020
Cabeza, J. A.; da Silva, I.; del Rio, I.; Garcia-Granda, S. [ N,N'-Bis-(6-methylpyrid-2-ylium)-(1 R,2 R)-1,2-diaminocyclohexane] bis-[(p-cymene)-trichlororuthenate(II)]. Appl. Organomet. Chem. 2005, 19, 209-210, 10.1002/aoc.841
Arslan, H.; Van der Veer, D.; Özdemir, I.; Gürbüz, N.; Gök, Y.; Çetinkaya, B. 1,3-Bis(thiophen-2-ylmethyl)-3,4,5,6-tetrahydropyrimidinium trichlorido(η6-p-cymene)ruthenate(II). Acta Crystallogr., Sect. E: Struct. Rep. Online 2009, 65, m111-m112, 10.1107/S1600536808042773
Arslan, H.; Van der Veer, D.; Özdemir, I.; Gürbüz, N.; Gök, Y.; Çetinkaya, B. 1,3-Bis(2-thienylmethyl)-4,5-dihydroimidazolium trichlorido(η6-p-cymene)ruthenate(II). Acta Crystallogr., Sect. E: Struct. Rep. Online 2009, 65, m165-m166, 10.1107/S1600536809000464
Ibáñez, S.; Poyatos, M.; Peris, E. A D3h-symmetry hexaazatriphenylene-tris-N-heterocyclic carbene ligand and its coordination to iridium and gold: preliminary catalytic studies. Chem. Commun. 2017, 53, 3733-3736, 10.1039/C7CC00525C
Krstić, M.; Sovilj, S. P.; Grgurić-Šipka, S.; Evans, I. R.; Borozan, S.; Santibanez, J. F. Synthesis, structural and spectroscopic characterization, in vitro cytotoxicity and in vivo activity as free radical scavengers of chlorido(p-cymene) complexes of ruthenium(II) containing N-alkylphenothiazines. Eur. J. Med. Chem. 2011, 46, 4168-4177, 10.1016/j.ejmech.2011.06.019
Toennemann, J.; Scopelliti, R.; Severin, K. (Arene)ruthenium Complexes with Imidazolin-2-imine and Imidazolidin-2-imine Ligands. Eur. J. Inorg. Chem. 2014, 4287-4293, 10.1002/ejic.201402583
Kishan, R.; Kumar, R.; Baskaran, S.; Sivasankar, C.; Thirupathi, N. Ionic and Neutral Half-Sandwich Guanidinatoruthenium(II) Complexes and Their Solution Behavior. Eur. J. Inorg. Chem. 2015, 3182-3194, 10.1002/ejic.201500395
Vock, C. A.; Scolaro, C.; Phillips, A. D.; Scopelliti, R.; Sava, G.; Dyson, P. J. Synthesis, Characterization, and in Vitro Evaluation of Novel Ruthenium(II) η6-Arene Imidazole Complexes. J. Med. Chem. 2006, 49, 5552-5561, 10.1021/jm060495o
Marchetti, F.; Pettinari, C.; Pettinari, R.; Cerquetella, A.; Di Nicola, C.; Macchioni, A.; Zuccaccia, D.; Monari, M.; Piccinelli, F. Synthesis and Intramolecular and Interionic Structural Characterization of Half-Sandwich (Arene)Ruthenium(II) Derivatives of Bis(Pyrazolyl)Alkanes. Inorg. Chem. 2008, 47, 11593-11603, 10.1021/ic801150c
Zhou, Q.; Li, P.; Lu, R.; Qian, Q.; Lei, X.; Xiao, Q.; Huang, S.; Liu, L.; Huang, C.; Su, W. Synthesis, X-ray Diffraction Study, and Cytotoxicity of a Cationic p-Cymene Ruthenium Chloro Complex Containing a Chelating Semicarbazone Ligand. Z. Anorg. Allg. Chem. 2013, 639, 943-946, 10.1002/zaac.201300142
Su, W.; Tang, Z.; Xiao, Q.; Li, P.; Qian, Q.; Lei, X.; Huang, S.; Peng, B.; Cui, J.; Huang, C. Synthesis, structures, antiproliferative activity of a series of ruthenium(II) arene derivatives of thiosemicarbazones ligands. J. Organomet. Chem. 2015, 783, 10-16, 10.1016/j.jorganchem.2014.12.041
Mu, C.; Prosser, K. E.; Harrypersad, S.; MacNeil, G. A.; Panchmatia, R.; Thompson, J. R.; Sinha, S.; Warren, J. J.; Walsby, C. J. Activation by Oxidation: Ferrocene-Functionalized Ru(II)-Arene Complexes with Anticancer, Antibacterial, and Antioxidant Properties. Inorg. Chem. 2018, 57, 15247-15261, 10.1021/acs.inorgchem.8b02542
Volbeda, J.; Jones, P. G.; Tamm, M. Preparation of chiral imidazolin-2-imine ligands and their application in ruthenium-catalyzed transfer hydrogenation. Inorg. Chim. Acta 2014, 422, 158-166, 10.1016/j.ica.2014.06.026
Mayfield, H. G.; Bull, W. E. Co-ordinating tendencies of the hexafluorophosphate ion. J. Chem. Soc. A 1971, 2279-2281, 10.1039/j19710002279
Kumar, P.; Gupta, R. K.; Pandey, D. S. Half-sandwich arene ruthenium complexes: synthetic strategies and relevance in catalysis. Chem. Soc. Rev. 2014, 43, 707-733, 10.1039/C3CS60189G
Singh, A. K.; Pandey, D. S.; Xu, Q.; Braunstein, P. Recent advances in supramolecular and biological aspects of arene ruthenium(II) complexes. Coord. Chem. Rev. 2014, 270-271, 31-56, 10.1016/j.ccr.2013.09.009
Allen, F. H.; Watson, D. G.; Brammer, L.; Orpen, A. G.; Taylor, R. In International Tables for Crystallography; Prince, E., Ed.; Springer: Berlin, 2006; Vol. C, pp 790-811 10.1107/9780955360206000062.
Martínez-Alonso, M.; Sanz, P.; Ortega, P.; Espino, G.; Jalón, F. A.; Martín, M.; Rodríguez, A. M.; López, J. A.; Tejel, C.; Manzano, B. R. Analysis of Ion Pairing in Solid State and Solution in p-Cymene Ruthenium Complexes. Inorg. Chem. 2020, 59, 14171-14183, 10.1021/acs.inorgchem.0c01951
Martínez-Alonso, M.; Busto, N.; Jalón, F. A.; Manzano, B. R.; Leal, J. M.; Rodríguez, A. M.; García, B.; Espino, G. Derivation of Structure-Activity Relationships from the Anticancer Properties of Ruthenium(II) Arene Complexes with 2-Aryldiazole Ligands. Inorg. Chem. 2014, 53, 11274-11288, 10.1021/ic501865h
Kumar, A.; Kumar, A.; Gupta, R. K.; Paitandi, R. P.; Singh, K. B.; Trigun, S. K.; Hundal, M. S.; Pandey, D. S. Cationic Ru(II), Rh(III) and Ir(III) complexes containing cyclic π-perimeter and 2-aminophenyl benzimidazole ligands: Synthesis, molecular structure, DNA and protein binding, cytotoxicity and anticancer activity. J. Organomet. Chem. 2016, 801, 68-79, 10.1016/j.jorganchem.2015.10.008
Guerriero, A.; Oberhauser, W.; Riedel, T.; Peruzzini, M.; Dyson, P. J.; Gonsalvi, L. New Class of Half-Sandwich Ruthenium(II) Arene Complexes Bearing the Water-Soluble CAP Ligand as an in Vitro Anticancer Agent. Inorg. Chem. 2017, 56, 5514-5518, 10.1021/acs.inorgchem.7b00915
Dwyer, F. P.; Gyarfas, E. C.; Rogers, W. P.; Koch, J. H. Biological Activity of Complex Ions. Nature 1952, 170, 190-191, 10.1038/170190a0
Alderden, R. A.; Hall, M. D.; Hambley, T. W. The Discovery and Development of Cisplatin. J. Chem. Educ. 2006, 83, 728-734, 10.1021/ed083p728
Ghosh, S. Cisplatin: The first metal based anticancer drug. Bioorg. Chem. 2019, 88, 102925, 10.1016/j.bioorg.2019.102925
Thota, S.; Rodrigues, D. A.; Crans, D. C.; Barreiro, E. J. Ru(II) Compounds: Next-Generation Anticancer Metallotherapeutics?. J. Med. Chem. 2018, 61, 5805-5821, 10.1021/acs.jmedchem.7b01689
Süss-Fink, G. Arene ruthenium complexes as anticancer agents. Dalton Trans. 2010, 39, 1673-1688, 10.1039/B916860P
Ang, W. H.; Casini, A.; Sava, G.; Dyson, P. J. Organometallic ruthenium-based antitumor compounds with novel modes of action. J. Organomet. Chem. 2011, 696, 989-998, 10.1016/j.jorganchem.2010.11.009
Noffke, A. L.; Habtemariam, A.; Pizarro, A. M.; Sadler, P. J. Designing organometallic compounds for catalysis and therapy. Chem. Commun. 2012, 48, 5219-5246, 10.1039/c2cc30678f
Nazarov, A. A.; Hartinger, C. G.; Dyson, P. J. Opening the lid on piano-stool complexes: An account of ruthenium(II)-arene complexes with medicinal applications. J. Organomet. Chem. 2014, 751, 251-260, 10.1016/j.jorganchem.2013.09.016
Singh, S. K.; Pandey, D. S. Multifaceted half-sandwich arene-ruthenium complexes: interactions with biomolecules, photoactivation, and multinuclearity approach. RSC Adv. 2014, 4, 1819-1840, 10.1039/C3RA44131H
Blunden, B. M.; Stenzel, M. H. Incorporating ruthenium into advanced drug delivery carriers-an innovative generation of chemotherapeutics. J. Chem. Technol. Biotechnol. 2015, 90, 1177-1195, 10.1002/jctb.4507
Mari, C.; Pierroz, V.; Ferrari, S.; Gasser, G. Combination of Ru(II) complexes and light: new frontiers in cancer therapy. Chem. Sci. 2015, 6, 2660-2686, 10.1039/C4SC03759F
Murray, B. S.; Babak, M. V.; Hartinger, C. G.; Dyson, P. J. The development of RAPTA compounds for the treatment of tumors. Coord. Chem. Rev. 2016, 306, 86-114, 10.1016/j.ccr.2015.06.014
Montani, M.; Pazmay, G. V. B.; Hysi, A.; Lupidi, G.; Pettinari, R.; Gambini, V.; Tilio, M.; Marchetti, F.; Pettinari, C.; Ferraro, S.; Iezzi, M.; Marchini, C.; Amici, A. The water soluble ruthenium(II) organometallic compound [Ru(p-cymene)(bis(3,5-dimethylpyrazol-1-yl)methane)Cl]Cl suppresses triple negative breast cancer growth by inhibiting tumor infiltration of regulatory T cells. Pharmacol. Res. 2016, 107, 282-290, 10.1016/j.phrs.2016.03.032
Marchetti, F.; Pettinari, R.; Di Nicola, C.; Pettinari, C.; Palmucci, J.; Scopelliti, R.; Riedel, T.; Therrien, B.; Galindo, A.; Dyson, P. J. Synthesis, characterization and cytotoxicity of arene-ruthenium(II) complexes with acylpyrazolones functionalized with aromatic groups in the acyl moiety. Dalton Trans. 2018, 47, 868-878, 10.1039/C7DT04249C
Swaminathan, S.; Haribabu, J.; Kalagatur, N. K.; Konakanchi, R.; Balakrishnan, N.; Bhuvanesh, N.; Karvembu, R. Synthesis and Anticancer Activity of [RuCl2(η6-arene)(aroylthiourea)] Complexes-High Activity against the Human Neuroblastoma (IMR-32) Cancer Cell Line. ACS Omega 2019, 4, 6245-6256, 10.1021/acsomega.9b00349
Khan, T. A.; Bhar, K.; Thirumoorthi, R.; Roy, T. K.; Sharma, A. K. Design, synthesis, characterization and evaluation of the anticancer activity of water-soluble half-sandwich ruthenium(II) arene halido complexes. New J. Chem. 2020, 44, 239-257, 10.1039/C9NJ03663F
Chen, C.; Xu, C.; Li, T.; Lu, S.; Luo, F.; Wang, H. Novel NHC-coordinated ruthenium(II) arene complexes achieve synergistic efficacy as safe and effective anticancer therapeutics. Eur. J. Med. Chem. 2020, 203, 112605, 10.1016/j.ejmech.2020.112605
Loughrey, B. T.; Healy, P. C.; Parsons, P. G.; Williams, M. L. Selective Cytotoxic Ru(II) Arene Cp∗ Complex Salts [R-PhRuCp*]+X-for X = BF4-, PF6-, and BPh4-. Inorg. Chem. 2008, 47, 8589-8591, 10.1021/ic801159f
Magut, P. K. S.; Das, S.; Fernand, V. E.; Losso, J.; McDonough, K.; Naylor, B. M.; Aggarwal, S.; Warner, I. M. Tunable Cytotoxicity of Rhodamine 6G via Anion Variations. J. Am. Chem. Soc. 2013, 135, 15873-15879, 10.1021/ja407164w
Haghdoost, M. M.; Golbaghi, G.; Guard, J.; Sielanczyk, S.; Patten, S. A.; Castonguay, A. Synthesis, characterization and biological evaluation of cationic organoruthenium(II) fluorene complexes: influence of the nature of the counteranion. Dalton Trans. 2019, 48, 13396-13405, 10.1039/C9DT00143C