Rationally designed copper-deferiprone-phenanthroline complex as a dual anticancer and SARS-CoV-2 inhibitor.

Publication date: Jul 02, 2026

A novel ternary copper-deferiprone-phenanthroline complex was rationally designed, synthesized, and thoroughly characterized. DNA interaction studies revealed that deferiprone binds to CT-DNA via groove binding, whereas the copper complex predominantly intercalates. The complex exhibited remarkable cytotoxicity against HT-29, HepG2, and MDA-MB-468 human cancer cell lines, while showing lower toxicity toward normal HEK-293 cells. Compared to cisplatin, doxorubicin, oxaliplatin, fluorouracil, and deferiprone, the copper complex demonstrated significantly enhanced anticancer potency. Flow cytometry analysis indicated late-stage apoptosis induction and G1-phase cell cycle arrest. Gene expression studies showed down-regulation of BCL2 and up-regulation of BAX, Caspase-3, and the BAX/BCL2 ratio, confirming apoptosis-mediated cytotoxicity. In addition, molecular docking revealed strong binding affinities of the complex toward key SARS-CoV-2 targets, including the main protease (Mpro), papain-like protease (PLpro), nucleocapsid N-terminal RNA-binding domain, and RNA-dependent RNA polymerase (RdRp), surpassing several currently available antiviral agents. Collectively, these findings identify the copper-deferiprone-phenanthroline complex as a promising candidate for dual biomedical applications, serving as both an anticancer agent and a potential SARS-CoV-2 inhibitor.

Semantics

Type Source Name
drug DRUGBANK Copper
drug DRUGBANK Deferiprone
disease MESH cancer
drug DRUGBANK Cisplatin
drug DRUGBANK Doxorubicin
drug DRUGBANK Oxaliplatin
drug DRUGBANK Fluorouracil
pathway REACTOME Apoptosis
drug DRUGBANK Papain
pathway KEGG RNA polymerase

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