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Coordination Complexes and Polymers of Novel Hybrid Tetrazole-Triazole-Pyrazole Ligands: Synthesis, Structural Characterization, and Biological Evaluation

  • Yousra Bahjou
  • , Youssef Draoui
  • , Smaail Radi (Korresp. Autor*in)
  • , Koen Robeyns
  • , Weiyang Li
  • , Haralampos N. Miras
  • , Marilena Ferbinteanu
  • , Aurelian Rotaru
  • , Hannah Bittner
  • , Michael A. Jakupec
  • , Christian R. Kowol
  • , Olivera Cvetkovic
  • , Mariusz Wolff
  • , Yann Garcia

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

New series of triazole/pyrazole and tetrazole/triazole/pyrazole ligands were synthesized and coordinated with various transition metals to yield a diverse library of 14 complexes. All compounds were fully characterized by elemental analysis, mass spectrometry, powder X-ray diffractometry, and a range of spectroscopic techniques (1H NMR, 13C NMR, FT-IR, and UV–visible diffuse reflectance). The crystal and molecular structures were elucidated via single-crystal X-ray diffraction, and their supramolecular features were explored through Hirshfeld surface analysis. The 57Fe Mössbauer and magnetic SQUID measurements confirmed the high-spin nature of the FeII complex 1. In the three human cancer cell lines, most metal complexes are somewhat more cytotoxic than the inactive ligands, with Co(II) complexes 2 and 8 being the most potent in two of the cell lines (with IC50 values in the two-digit micromolar range). Overall, this study highlights how blending tetrazole/triazole/pyrazole ligands with transition metals can lead to coordination compounds with potential in anticancer research, as a proof of concept. These results add valuable insight to the expanding field of metal-based therapeutics and could help guide the development of next-generation, more effective agents.

OriginalspracheEnglisch
FachzeitschriftChemistry - A European Journal
DOIs
PublikationsstatusElektronische Veröffentlichung vor Drucklegung - 2026

Fördermittel

This research was supported by a bilateral WBI‐Morocco grant (2018–2022), the Fonds de la Recherche Scientifique‐FNRS (PDR T.0095.21, CDR J.0064.23, CDR J.0168.22, EQP U.N027.24), the PPR2‐MESRSFC‐CNRSTP10 project (Morocco), University Of Glasgow and the UEFISCDI (HighSensSpin, TE 77 / 2022 (PN‐III‐P1‐1.1‐TE‐2021‐1654). We thank CNRST Morocco and WBI Morocco for an excellence PhD stipendium as well as the ARES for a PhD scholarship allocated to YB. W. L. was supported by fellowship from the China Scholarship Council (201908310083). The authors gratefully acknowledge the Mass Spectrometry Center and the Core Facility for Crystal Structure Analysis, Faculty of Chemistry, University of Vienna. We also thank Michaela Hejl (Institute of Inorganic Chemistry, University of Vienna) for cytotoxicity tests of reference compounds.

TrägerTrägernummer
Fonds de la Recherche ScientifiquePDR T.0095.21, CDR J.0064.23, CDR J.0168.22, EQP U.N027.24

    UN SDGs

    Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

    1. SDG 3 – Gesundheit und Wohlergehen
      SDG 3 – Gesundheit und Wohlergehen

    ÖFOS 2012

    • 104015 Organische Chemie
    • 104008 Katalyse

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