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Updated: Jun 1, 2026

Synthesis and Evaluation of a Ruthenium-based Mitochondrial Calcium Uptake Inhibitor
Published on: October 26, 2017
Anticancer activity of tetracationic arene ruthenium metalla-cycles
Nicolas P E Barry1, Fabio Edafe, Bruno Therrien
1Institute of Chemistry, University of Neuchatel, 51 Ave de Bellevaux, CH-2000 Neuchatel, Switzerland.
Abstract:
A series of cationic metalla-cycles of the general formulae [(η(6)-p-cym)(4)Ru(4)(OO∩OO)(2)(N∩N)(2)](4+) and [(η(6)-p-cym)(4)Ru(4)(NO∩NO)(2)(N∩N)(2)](4+) has been prepared from the dinuclear arene ruthenium precursors [(η(6)-p-cym)(2)Ru(2)(OO∩OO)(2)Cl(2)] (OO∩OO = oxalato, 1,4-benzoquinonato-2,5-diolato, 1,4-naphtoquinonato-5,8-diolato, 9,10-anthraquinonato-1,4-diolato, 5,12-tetraquinonato-6,11-diolato) and [(η(6)-p-cym)(2)Ru(2)(NO∩NO)(2)Cl(2)] (NO∩NO = oxamido, oxonico) by reaction with two different bidentate linkers (N∩N = 1,2-bis(4-pyridyl)ethylene, 1,2-bis(4-pyridyl)ethane) in the presence of silver triflate. All complexes were isolated as triflate salts and characterised by NMR, infrared, UV-visible, mass spectrometry and by elemental analysis. The cytotoxicities of the tetranuclear ruthenium complexes have been established using ovarian A2780 and A2780cisR cancer cell lines. All complexes exhibit moderate to excellent activity on both the cisplatin resistant and cisplatin sensitive cells, thus suggesting a mode of action different from cisplatin.
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