Tricarbonyl rhenium(i) complexes with 8-hydroxyquinolines: structural, chemical, antibacterial, and anticancer characteristics.
Krzysztof ŁyczkoAnna PogorzelskaUrszula CzęścikMirosława KoronkiewiczJoanna E RodeElżbieta BednarekRobert KawęckiKarolina WęgrzyńskaAnna BaraniakMałgorzata MilczarekJan Cz DobrowolskiPublished in: RSC advances (2024)
Twelve tricarbonyl rhenium(i) complexes in the '2 + 1' system with the anionic bidentate N,O-donor ligand (deprotonated 8-hydroxyquinoline (HQ) or its 2-methyl (MeHQ) or 5-chloro (ClHQ) derivative) and neutral N-donor diazoles (imidazole (Him), 2-methylimidazole (MeHim), 3,5-dimethylpyrazole (Hdmpz), and 3-phenylpyrazole (HPhpz)) were synthesized: [Re(CO) 3 (L N,O )L N ] (L N,O = Q - , MeQ - , ClQ - ; L N = Him, MeHim, Hdmpz, HPhpz). Their crystal structures were determined by the scXRD method, compared with the DFT-calculated ones, and characterized by analytical (EA) and spectroscopic techniques (FT-IR, NMR, and UV-Vis) interpreted with DFT and TD-DFT calculations. Most of the Re(i) complexes did not show relevant antibacterial activity against Gram-negative and Gram-positive bacterial strains. Only [Re(CO) 3 (MeQ)Him] demonstrated significant action 4-fold better against Gram-negative Pseudomonas aeruginosa than the free MeHQ ligand. The cytotoxicity of the compounds was estimated using human acute promyelocytic leukemia (HL-60), ovarian (SKOV-3), prostate (PC-3), and breast (MCF-7) cancer, and breast non-cancerous (MCF-10A) cell lines. Only HQ and ClHQ ligands and [Re(CO) 3 (Q)Hdmpz] complex had good selectivity toward MCF-7 cell line. HL-60 cells were sensitive to all complexes (IC 50 = 1.5-14 μM). Still, pure HQ and ClHQ ligands were slightly more active than the complexes.
Keyphrases
- gram negative
- multidrug resistant
- density functional theory
- molecular docking
- pseudomonas aeruginosa
- breast cancer cells
- prostate cancer
- drug resistant
- endothelial cells
- magnetic resonance
- acute myeloid leukemia
- induced apoptosis
- escherichia coli
- cystic fibrosis
- bone marrow
- molecular dynamics
- papillary thyroid
- mass spectrometry
- biofilm formation
- molecular dynamics simulations
- intensive care unit
- young adults
- signaling pathway
- oxidative stress
- crystal structure
- cell death
- respiratory failure
- drug induced
- squamous cell
- pi k akt