Redox‐active Cu(II) complexes are able to form reactive oxygen species (ROS) in the presence of oxygen and reducing agents. Recently, Faller et al. reported that ROS generation by Cu(II) ATCUN complexes is not as high as assumed for decades. High complex stability results in silencing of the Cu(II)/Cu(I) redox cycle and therefore leads to low ROS generation. In this work, we demonstrate that an exchange of the α‐amino acid Gly with the β‐amino acid β‐Ala at position 2 (Gly2→β‐Ala2) of the ATCUN motif reinstates ROS production (•OH and H2O2). Potentiometry, cyclic voltammetry, EPR spectroscopy and DFT simulations were utilized to explain the increased ROS generation of these β‐Ala2‐containing ATCUN complexes. We also observed enhanced oxidative cleavage activity towards plasmid DNA for β‐Ala2 compared to the Gly2 complexes. Modifications with positively charged Lys residues increased the DNA affinity through electrostatic interactions as determined by UV/VIS, fluorescence, and CD spectroscopy, and consequently led to a further increase in nuclease activity. A similar trend was observed regarding the cytotoxic activity of the complexes against several human cancer cell lines where β‐Ala2 peptide complexes had lower IC50 values compared to Gly2. The higher cytotoxicity could be attributed to an increased cellular uptake as determined by ICP‐MS measurements.
The substitution of phenyl rings in established drugs
with ferrocenyl
moieties has been reported to yield compounds with improved biological
activity and alternative modes of action, often involving the formation
of reactive oxygen species (ROS). Translating this concept to N-heterocyclic
carbene (NHC) complexes, we report here organometallics with a piano-stool
structure that feature di- or tridentate ligand systems. The ligands
impacted the cytotoxic activity of the NHC complexes, but the coordination
modes seemed to have a limited influence, which may be related to
the propensity of forming the same species in solution. In general,
the stability of the complexes in an aqueous environment and their
reactivity to selected biomolecules were largely dominated by the
nature of the metal center. While the complexes promoted the formation
of ROS, the levels did not correlate with their cytotoxic activity.
However, the introduction of ferrocenyl moieties had a significant
impact on the antiproliferative potency of the complexes and, in particular,
some of the ferrocenyl-functionalized compounds yielded IC50 values in the low μM range.
A new [PdPtL4]4+ heterobimetallic cage containing hydrazone linkages has been synthesised using the sub-component self-assembly approach. 1H and DOSY nuclear magnetic resonance (NMR) spectroscopy and electrospray ionisation mass spectrometry (ESIMS)...
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