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Synthesis and biological study of benzothiophene-fused azaenediyne hybrids as potential anticancer agents Full article

Journal Organic & Biomolecular Chemistry
ISSN: 1477-0520 , E-ISSN: 1477-0539
Output data Year: 2026, Volume: 24, Pages: 617-629 Pages count : 13 DOI: 10.1039/d5ob01600b
Authors Khmelevskaya Ekaterina A. 1 , Danilkina Natalia A. 1 , Silonov Sergey A. 1,2 , Tretyakov Evgeny V. 3 , Khlebnikov Alexander F. 1 , Melnikov Vladimir E. 1 , Nikitina Anastasiia V. 4 , Rumyantsev Andrey M. 5 , Kryukova Mariya A. 1 , Balova Irina A. 1
Affiliations
1 Institute of Chemistry, Saint Petersburg State University (SPbU), Saint Petersburg 199034, Russia
2 Laboratory of Structural Dynamics, Stability and Folding of Proteins, Institute of Cytology, Russian Academy of Sciences, 194064, Russia
3 N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Science, Moscow 119991, Russia
4 Center for Magnetic Resonance, Research Park, Saint Petersburg State University (SPbU), Saint Petersburg, 199034, Russia
5 Department of Genetics and Biotechnology, Saint Petersburg State University (SPbU), Saint Petersburg 199034, Russia

Funding (1)

1

Abstract: Enediyne antibiotics are strong cytotoxic DNA damaging agents with a radical mechanism of action. Here, we report on the synthesis of enediyne analogues using click chemistry as a mild and efficient tool for late-stage modification of the enediyne core. Azaenediyne fused to benzothiophene, which is stable at room temperature while being reactive in the Bergman cyclisation at 37 °C, was chosen as the parent enediyne scaffold. Two approaches were developed for the construction of hybrid molecules by click reactions: the conjugation of the key enediyne with a terminal triple bond handle and various azido-ligands by CuAAC, and an “amine-to-isothiocyanate” addition for the NCS enediyne. While CuAAC required a two-step protocol starting from a Co-protected enediyne, the “amine-to-NCS” addition approach was suitable for the unprotected NCS enediyne directly. Both approaches were successfully applied to synthesise a library of enediyne-containing hybrid molecules with triazole or thiourea linkers. Attaching a Hoechst-like MGB ligand was found to be the most promising strategy for achieving a nanomolar level of enediyne hybrid cytotoxicity. The triazole-containing Hoechst hybrid, which has been proven to localise intracellularly in the nucleus and to be selective for the HeLa cancer cell line, is considered the best candidate for further anticancer drug development.
Cite: Khmelevskaya E.A. , Danilkina N.A. , Silonov S.A. , Tretyakov E.V. , Khlebnikov A.F. , Melnikov V.E. , Nikitina A.V. , Rumyantsev A.M. , Kryukova M.A. , Balova I.A.
Synthesis and biological study of benzothiophene-fused azaenediyne hybrids as potential anticancer agents
Organic & Biomolecular Chemistry. 2026. V.24. P.617-629. DOI: 10.1039/d5ob01600b WOS Scopus OpenAlex
Identifiers:
Web of science: WOS:001645078700001
Scopus: 2-s2.0-105025526383
OpenAlex: W7115596273
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