4.8 Article

Cytotoxic (salen) ruthenium(III) anticancer complexes exhibit different modes of cell death directed by axial ligands

Journal

CHEMICAL SCIENCE
Volume 8, Issue 10, Pages 6865-6870

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7sc02205k

Keywords

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Funding

  1. Hong Kong University Grants Committee Area of Excellence Scheme [AoE/P-03-08]
  2. National 973 Basic Research Program of China [2013CB911302]
  3. National Natural Science Foundation of China [21371145]
  4. City University of Hong Kong [9667114, 9667131, 9667148]

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Two novel series of (salen) ruthenium(III) complexes bearing guanidine and amidine axial ligands were synthesized, characterized, and evaluated for anticancer activity. In vitro cytotoxicity tests demonstrate that these complexes are cytotoxic against various cancer cell lines and the leading complexes have remarkable cancer-cell selectivity. A detailed study of the guanidine complex 7 and the amidine complex 13 reveals two distinguished modes of action. Complex 7 weakly binds to DNA and induces DNA damage, cell cycle arrest, and typical apoptosis pathways in MCF-7 cells. In contrast, complex 13 induces paraptosis-like cell death hallmarked by massive vacuole formation, mitochondrial swelling, and ER stress, resulting in significant cytotoxicity against human breast cancer cells. Our results provide an extraordinary example of tuning the mechanism of action of (salen) ruthenium(III) anticancer complexes by modifying the structure of the axial ligands.

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