A silver(I) and a gold(I) complex of the fluorescent N-heterocyclic carbenic (NHC) ligand 1-(9-anthracenylmethyl)-3-(3-trimethylsilyl-2-propynil)-benzimidazol-2-ylidene have been synthesized and characterized. These compounds show cytotoxicity in the micromolar range and higher antiproliferative properties than cisplatin (CDDP) against several tumour cell lines such as SW480 (colon), A549 (lung) and HepG2 (liver). Both metal complexes are successfully internalized by SW480 cells being the silver compound the most accumulated. Subsequently, they were evaluated as inhibitors of the selenoenzyme Thioredoxin reductase (TrxR) and as DNA binders. Fluorescence microscopy confirmed that both protein and DNA binding could be involved in the biologic...
Organometallic complexes offer the prospect of targeting multiple pathways that are important in can...
Gold(I) complexes with 1,3-substituted imidazole-2-ylidene and benzimidazole-2-ylidene ligands of th...
Au(NHC) and Au(NHC)2, i.e. a monocarbene gold(I) complex and the corresponding bis(carbene) complex,...
A silver(I) and a gold(I) complex of the fluorescent N-heterocyclic carbenic (NHC) ligand 1-(9-anthr...
Metal complexes with N-heterocyclic carbenic ligands (NHCs) have found applications not only in cata...
We report here on the synthesis of a series of mono-and dinuclear gold(I) complexes exhibiting sulfo...
The silver(I) N-heterocyclic carbene (NHC) complex bis(1-(anthracen-9-ylmethyl)-3-ethylimidazol-2-yl...
Silver(I) and gold(I)–N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
Silver(I) and gold(I) N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
Silver(I) and gold(I)-N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
We report here on the synthesis of a series of mono- and dinuclear gold(I) complexes exhibiting sul...
Gold(I) complexes with 1,3-substituted imidazole-2-ylidene and benzimidazole-2-ylidene ligands of th...
Aim: Metal carbenic complexes have received considerable attention in both the catalysis and biologi...
Organometallic complexes offer the prospect of targeting multiple pathways that are important in can...
Gold(I) complexes with 1,3-substituted imidazole-2-ylidene and benzimidazole-2-ylidene ligands of th...
Au(NHC) and Au(NHC)2, i.e. a monocarbene gold(I) complex and the corresponding bis(carbene) complex,...
A silver(I) and a gold(I) complex of the fluorescent N-heterocyclic carbenic (NHC) ligand 1-(9-anthr...
Metal complexes with N-heterocyclic carbenic ligands (NHCs) have found applications not only in cata...
We report here on the synthesis of a series of mono-and dinuclear gold(I) complexes exhibiting sulfo...
The silver(I) N-heterocyclic carbene (NHC) complex bis(1-(anthracen-9-ylmethyl)-3-ethylimidazol-2-yl...
Silver(I) and gold(I)–N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
Silver(I) and gold(I) N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
Silver(I) and gold(I)-N-heterocyclic carbene (NHC) complexes bearing a fluorescent anthracenyl ligan...
We report here on the synthesis of a series of mono- and dinuclear gold(I) complexes exhibiting sul...
Gold(I) complexes with 1,3-substituted imidazole-2-ylidene and benzimidazole-2-ylidene ligands of th...
Aim: Metal carbenic complexes have received considerable attention in both the catalysis and biologi...
Organometallic complexes offer the prospect of targeting multiple pathways that are important in can...
Gold(I) complexes with 1,3-substituted imidazole-2-ylidene and benzimidazole-2-ylidene ligands of th...
Au(NHC) and Au(NHC)2, i.e. a monocarbene gold(I) complex and the corresponding bis(carbene) complex,...