Tetrazolylidene-Stabilized Gold(I) Complexes: Synthesis and Evaluation of Anticancer Activity .
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Synthesis of Tetrazole Derivatives
Metal complexes synthesis and properties
Click Chemistry and Applications
The first comprehensive study of a series of seven mesoionic tetrazolylidene gold(I) chloride complexes (-) featuring a range of alkyl and aryl substituents (Me, -Bu, iPr, Ph, Tol, Dipp, Mes) is repor
APA
Simon Stifel, C Schmidt, et al. (2026). Tetrazolylidene-Stabilized Gold(I) Complexes: Synthesis and Evaluation of Anticancer Activity .. Inorganic chemistry, 65(16), 8915-8927. https://doi.org/10.1021/acs.inorgchem.6c00049
MLA
Simon Stifel, et al.. "Tetrazolylidene-Stabilized Gold(I) Complexes: Synthesis and Evaluation of Anticancer Activity .." Inorganic chemistry, vol. 65, no. 16, 2026, pp. 8915-8927.
PMID
41985072
Abstract
The first comprehensive study of a series of seven mesoionic tetrazolylidene gold(I) chloride complexes (-) featuring a range of alkyl and aryl substituents (Me, -Bu, iPr, Ph, Tol, Dipp, Mes) is reported. Three synthetic pathways enabling access to scarcely explored 1,3-disubstituted tetrazolium ligand precursors (-) have been established. All complexes are characterized by NMR spectroscopy, mass spectrometry, and elemental analysis, confirming their composition and purity. Single-crystal X-ray crystallography of six gold(I) complexes (-) reveals nearly linear coordination (176.49(11)-179.0(2)°) at the gold(I) center and a distinct geometric arrangement across the series. NMR stability studies with model nucleophiles cysteine (Cys) and glutathione (GSH) support the structural findings, demonstrating rapid and complete reaction of complexes - with thiols, as confirmed by H NMR and ESI-MS. The antiproliferative activity of the obtained complexes (-) and selected precursors (, , , ) has been evaluated using MTT assays against human A2780 (ovarian) and A549 (lung) cancer cell lines, alongside noncancerous VERO E6 kidney cells for comparison. Most of the complexes display high selectivity indices (SI = 63.2-86.7) and potent antiproliferative effects in the low submicromolar range against A2780, outperforming cisplatin and matching the activity of auranofin. Overall, the results presented here demonstrate the potential of gold(I) tetrazolylidene-based complexes for medicinal applications.
MeSH Terms
Humans; Antineoplastic Agents; Gold; Drug Screening Assays, Antitumor; Cell Proliferation; Coordination Complexes; Cell Line, Tumor; Molecular Structure; Tetrazoles; Animals; Crystallography, X-Ray; Structure-Activity Relationship; Models, Molecular; Chlorocebus aethiops; Dose-Response Relationship, Drug