Literature DB >> 30460942

Impact of copper and iron binding properties on the anticancer activity of 8-hydroxyquinoline derived Mannich bases.

Veronika F S Pape1, Nóra V May, G Tamás Gál, István Szatmári, Flóra Szeri, Ferenc Fülöp, Gergely Szakács, Éva A Enyedy.   

Abstract

The anticancer activity of 8-hydroxyquinolines relies on complex formation with redox active copper and iron ions. Here we employ UV-visible spectrophotometry and EPR spectroscopy to compare proton dissociation and complex formation processes of the reference compound 8-hydroxyquinoline (Q-1) and three related Mannich bases to reveal possible correlations with biological activity. The studied derivatives harbor a CH2-N moiety at position 7 linked to morpholine (Q-2), piperidine (Q-3), and chlorine and fluorobenzylamino (Q-4) substituents. Solid phase structures of Q-3, Q-4·HCl·H2O, [(Cu(HQ-2)2)2]·(CH3OH)2·Cl4·(H2O)2, [Cu(Q-3)2]·Cl2 and [Cu(HQ-4)2(CH3OH)]·ZnCl4·CH3OH were characterized by single-crystal X-ray diffraction analysis. In addition, the redox properties of the copper and iron complexes were studied by cyclic voltammetry, and the direct reaction with physiologically relevant reductants (glutathione and ascorbic acid) was monitored. In vitro cytotoxicity studies conducted with the human uterine sarcoma MES-SA/Dx5 cell line reveal the significant cytotoxicity of Q-2, Q-3, and Q-4 in the sub- to low micromolar range (IC50 values 0.2-3.3 μM). Correlation analysis of the anticancer activity and the metal binding properties of the compound series indicates that, at physiological pH, weaker copper(ii) and iron(iii) binding results in elevated toxicity (e.g.Q4: pCu = 13.0, pFe = 6.8, IC50 = 0.2 μM vs.Q1: pCu = 15.1, pFe = 13.0 IC50 = 2.5 μM). Although the studied 8-hydroxyquinolines preferentially bind copper(ii) over iron(iii), the cyclic voltammetry data revealed that the more cytotoxic ligands preferentially stabilize the lower oxidation state of the metal ions. A linear relationship between the pKa (OH) and IC50 values of the studied 8-hydroxyquinolines was found. In summary, we identify Q-4 as a potent and selective anticancer candidate with significant toxicity in drug resistant cells.

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Year:  2018        PMID: 30460942     DOI: 10.1039/c8dt03088j

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  4 in total

1.  Structure-Activity Relationships of 8-Hydroxyquinoline-Derived Mannich Bases with Tertiary Amines Targeting Multidrug-Resistant Cancer.

Authors:  Veronika F S Pape; Roberta Palkó; Szilárd Tóth; Miklós J Szabó; Judit Sessler; György Dormán; Éva A Enyedy; Tibor Soós; István Szatmári; Gergely Szakács
Journal:  J Med Chem       Date:  2022-05-25       Impact factor: 8.039

2.  Relation of Metal-Binding Property and Selective Toxicity of 8-Hydroxyquinoline Derived Mannich Bases Targeting Multidrug Resistant Cancer Cells.

Authors:  Veronika F S Pape; Anikó Gaál; István Szatmári; Nóra Kucsma; Norbert Szoboszlai; Christina Streli; Ferenc Fülöp; Éva A Enyedy; Gergely Szakács
Journal:  Cancers (Basel)       Date:  2021-01-05       Impact factor: 6.639

3.  8-Hydroxyquinoline-Amino Acid Hybrids and Their Half-Sandwich Rh and Ru Complexes: Synthesis, Anticancer Activities, Solution Chemistry and Interaction with Biomolecules.

Authors:  Tamás Pivarcsik; Orsolya Dömötör; János P Mészáros; Nóra V May; Gabriella Spengler; Oszkár Csuvik; István Szatmári; Éva A Enyedy
Journal:  Int J Mol Sci       Date:  2021-10-19       Impact factor: 5.923

4.  Solution speciation and human serum protein binding of indium(III) complexes of 8-hydroxyquinoline, deferiprone and maltol.

Authors:  Orsolya Dömötör; Bernhard K Keppler; Éva A Enyedy
Journal:  J Biol Inorg Chem       Date:  2022-03-03       Impact factor: 3.862

  4 in total

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