4.7 Article

Cu(II)-TACN complexes selectively induce antitumor activity in HepG-2 cells via DNA damage and mitochondrial-ROS-mediated apoptosis

Journal

DALTON TRANSACTIONS
Volume 49, Issue 1, Pages 114-123

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9dt03641e

Keywords

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Funding

  1. National Natural Science Foundation of China [21571141, 21977080]
  2. Tianjin Municipal Natural Science Foundation, China [15JCYBJC20300, 17JCZDJC33100]

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A new 1,4,7-triazacyclononane derivative, 4-benzyloxy-benzyl-1,4,7-triazacyclononane (btacn), and three associated cyclen complexes, Cu(btacn)Cl-2, Zn(btacn)Cl-2 and [Cu(btacn)(2)]center dot(ClO4)(2), were prepared to serve as DNA synthesis interferents. The compounds were characterized using IR, H-1 and C-13 NMR, ESI-MS, elemental analysis and X-ray single crystal diffraction methods, and their DNA damage mechanisms and cytotoxicities towards cancer and normal cells were studied. Among them, Cu(btacn)Cl-2 and [Cu(btacn)(2)]center dot(ClO4)(2) exhibit potent anti-proliferation activity in HepG-2 and HeLa cells, but low cytotoxicity in the normal cell models LO2 and HUVEC, giving SI values (IC50 ratios) ranging from 2.45 to 7.09-times higher than that of cisplatin. DNA binding and cleavage studies suggested that [Cu(btacn)(2)]center dot(ClO4)(2) can more easily intercalate into CT-DNA than Cu(btacn)Cl-2, which is consistent with the results of G2/S phase arrest and apoptosis in HepG-2 cells involving the complexes. In contrast, Zn(btacn)Cl-2 demonstrated weak DNA binding and no obvious cytotoxicity. The results suggest that Cu(btacn)Cl-2 and [Cu(btacn)(2)]center dot(ClO4)(2) mainly undergo redox processes to produce reactive oxygen species (ROS) that induce DNA degradation and mitochondrial damage.

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