AI Article Synopsis

  • Casiopeinas are a type of copper(II) coordination compounds that effectively induce cancer cell death with low toxicity to normal cells by triggering apoptosis through a redox process.
  • * The latest research introduces a third generation of these compounds featuring curcumin or dimethoxycurcumin as secondary ligands, involving the design, synthesis, and thorough characterization of sixteen new derivatives.
  • * Experimental methods used for characterization include various spectroscopic techniques, and initial cytotoxicity tests showed promising results against human cancer cell lines, indicating potential for further research in cancer treatment.*

Article Abstract

Casiopeinas are a family of copper(II) coordination compounds that have shown an important antineoplastic effect and low toxicity in normal cells. These compounds induce death cells by apoptosis through a catalytic redox process with endogenous reducing agents. Further studies included a structural variation, improving the activity and selectivity in cancer cells or other targets. In the present work we report the third generation, which contains a bioactive monocharged secondary ligand, as well as the design, synthesis, characterization and antiproliferative activity, of sixteen new copper(II) coordination compounds with curcumin or dimethoxycurcumin as secondary ligands. All compounds were characterized by elemental analysis, FTIR, UV-Vis, magnetic susceptibility, mass spectra with MALDI-flight time, cyclic voltammetry, electron paramagnetic resonance (EPR) spectroscopy and X-ray diffraction. Crystallization of two complexes was achieved in dimethylsulfoxide (DMSO) with polar solvent, and crystal data demonstrated that a square-based or square-base pyramid geometry are possible. A 1:1:1 stoichiometry (diimine: copper: curcuminoid) ratio and the possibility of a nitrate ion as a counterion were supported. H, C NMR spectra were used for the ligands. A sulforhodamine B assay was used to evaluate the cytotoxicity effect against two human cancer cell lines, SKLU-1 and HeLa. Electronic descriptors and redox potential were obtained by DFT calculations. Structure-activity relationships are strongly determined by the redox potential (E) of copper(II) and molar volume (V) of the complexes. These compounds can be used as a template to open a wide field of research both experimentally and theoretically.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182210PMC
http://dx.doi.org/10.3390/molecules27113504DOI Listing

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