4.6 Article

Complex formation of an estrone-salicylaldehyde semicarbazone hybrid with copper(II) and gallium(III): Solution equilibria and biological activity

Journal

JOURNAL OF INORGANIC BIOCHEMISTRY
Volume 220, Issue -, Pages -

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2021.111468

Keywords

Solution stability; X-ray crystal structure; Semicarbazones; Antibacterial; Hybrid molecules

Funding

  1. National Research, Development and Innovation Office-NKFIA [FK 124240, K 124544, GINOP-2.3.2-15-2016-00038]
  2. Ministry of Human Capacities, Hungary grant, TKP-2020
  3. Visegrad Scholarship [5201075]

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The study investigated the solution chemical properties and biological activities of a novel tridentate salicyaldehyde semicarbazoneestrone hybrid and a related bicyclic compound. The compounds showed relatively high stability, efficient gallium binding, significant cytotoxicity against cancer cells, and dissociation at physiological pH.
The solution chemical properties such as proton dissociation, complex formation with copper(II) and gallium(III) ions in addition to antibacterial and antitumor activity of a novel tridentate salicyaldehyde semicarbazoneestrone hybrid (estrone-SC) and a related bicyclic compound (thn-SC) were investigated. The crystal structure of complex [Cu(thn-SCH- 1)Cl] was studied by single crystal X-ray diffraction method. Estrone-SC and thnSC form mono-ligand complexes with Cu(II) characterized by relatively high stability, however, they are much less stable than their thiosemicarbazone analogues. The neutral Cu(II) complexes with (O-,N,O- )(H2O) coordination mode predominate at physiological pH. Estrone-SC and thn-SC are more efficient Ga(III) binders in comparison with thiosemicarbazones, although the complexes also suffer dissociation at pH 7.4. The Cu(II) complex of estrone-SC displayed significant cytotoxicity in A549, SW480 and CH1/PA cancer cells, and moderate apoptosis induction and ROS formation. The semicarbazone compounds did not exhibit antibacterial effect; unlike the related Cu(II)-thiosemicarbazone complexes represented by the fairly low MIC values (3-50 mu M) obtained on the Gram-positive Staphylococcus aureus and Enterococcus faecalis bacteria.

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