Synthesis and Biological Evaluation of Novel Amino and Amido Substituted Pentacyclic Benzimidazole Derivatives as Antiproliferative Agents.
Nataša PerinMarjana GulinMarija KosLeentje PersoonsDirk DaelemansIvana FabijanićMarijana Radić StojkovićMarijana HranjecPublished in: International journal of molecular sciences (2024)
Newly designed pentacyclic benzimidazole derivatives featuring amino or amido side chains were synthesized to assess their in vitro antiproliferative activity. Additionally, we investigated their direct interaction with nucleic acids, aiming to uncover potential mechanisms of biological action. These compounds were prepared using conventional organic synthesis methodologies alongside photochemical and microwave-assisted reactions. Upon synthesis, the newly derived compounds underwent in vitro testing for their antiproliferative effects on various human cancer cell lines. Notably, derivatives 6 and 9 exhibited significant antiproliferative activity within the submicromolar concentration range. The biological activity was strongly influenced by the N atom's position on the quinoline moiety and the position and nature of the side chain on the pentacyclic skeleton. Findings from fluorescence, circular dichroism spectroscopy, and thermal melting assays pointed toward a mixed binding mode-comprising intercalation and the binding of aggregated compounds along the polynucleotide backbone-of these pentacyclic benzimidazoles with DNA and RNA.
Keyphrases
- molecular docking
- single molecule
- high resolution
- endothelial cells
- papillary thyroid
- circulating tumor
- high throughput
- dna binding
- atomic force microscopy
- molecular dynamics
- binding protein
- nucleic acid
- cell free
- squamous cell carcinoma
- induced pluripotent stem cells
- structure activity relationship
- risk assessment
- squamous cell
- climate change
- transcription factor
- water soluble