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Ruthenium-based PACT agents based on bisquinoline chelates: synthesis, photochemistry, and cytotoxicity

Anja Busemann; Ingrid Flaspohler; Xue-Quan Zhou; Claudia Schmidt; Sina K. Goetzfried; Vincent H. S. van Rixel; Ingo Ott; Maxime A. Siegler; Sylvestre Bonnet
JBIC Journal of Biological Inorganic Chemistry · Vol. 26, Issue 6 · pp. 667-674 · 2021

Abstract

The known ruthenium complex [Ru(tpy)(bpy)(Hmte)](PF 6 ) 2 ([ 1 ](PF 6 ) 2 , where tpy = 2,2’:6’,2″-terpyridine, bpy = 2,2’-bipyridine, Hmte = 2-(methylthio)ethanol) is photosubstitutionally active but non-toxic to cancer cells even upon light irradiation. In this work, the two analogs complexes [Ru(tpy)(NN)(Hmte)](PF 6 ) 2 , where NN = 3,3'-biisoquinoline (i-biq, [ 2 ](PF 6 ) 2 ) and di(isoquinolin-3-yl)amine (i-Hdiqa, [ 3 ](PF 6 ) 2 ), were synthesized and their photochemistry and phototoxicity evaluated to assess their suitability as photoactivated chemotherapy (PACT) agents. The increase of the aromatic surface of [ 2 ](PF 6 ) 2 and [ 3 ](PF 6 ) 2 , compared to [ 1 ](PF 6 ) 2 , leads to higher lipophilicity and higher cellular uptake for the former complexes. Such improved uptake is directly correlated to the cytotoxicity of these compounds in the dark: while [ 2 ](PF 6 ) 2 and [ 3 ](PF 6 ) 2 showed low EC 50 values in human cancer cells, [ 1 ](PF 6 ) 2 is not cytotoxic due to poor cellular uptake. While stable in the dark, all complexes substituted the protecting thioether ligand upon light irradiation (520 nm), with the highest photosubstitution quantum yield found for [ 3 ](PF 6 ) 2 (Φ [ 3 ] = 0.070). Compounds [ 2 ](PF 6 ) 2 and [ 3 ](PF 6 ) 2 were found both more cytotoxic after light activation than in the dark, with a photo index of 4. Considering the very low singlet oxygen quantum yields of these compounds, and the lack of cytotoxicity of the photoreleased Hmte thioether ligand, it can be concluded that the toxicity observed after light activation is due to the photoreleased aqua complexes [Ru(tpy)(NN)(OH 2 )] 2+ , and thus that [ 2 ](PF 6 ) 2 and [ 3 ](PF 6 ) 2 are promising PACT candidates. Graphic abstract

Bibliographic Information

JournalJBIC Journal of Biological Inorganic Chemistry
PublisherSpringer
Publication Date2021-09-01
Publication Year2021
Volume26
Issue6
Pages667-674
Document TypeJournal Article
eISSN1432-1327
DOI10.1007/s00775-021-01882-8

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NARA Access Coverage1996-01-01~Current
Journal Homepagehttps://www.springer.com/journal/775
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