Synthesis and in silico studies of certain benzo[f]quinoline-based heterocycles as antitumor agents

El-Helw, Eman A. E.; Asran, Mahmoud; Azab, Mohammad E; Helal, Maher H; Alzahrani, Abdullah Y A; Ramadan, Sayed;

Abstract


A series of benzoquinoline-employing heterocycles was synthesized by treating 3-chlorobenzo[f]quinoline-2-carbaldehyde with N-phenyl-3-methylpyrazolone, 4-aminoacetophenone, 1,2-diaminoethane, and 2-cyanoethanohydrazide. Also, pyridine, chromene, α,β-unsaturated nitrile, thiosemicarbazone, and 1,2-bis-aryl hydrazine derivatives were prepared from the cyanoethanohydrazone obtained. The DFT calculations and experiment outcomes were consistent. In vitro screening of their antiproliferative efficacy was examined against HCT116 and MCF7 cancer cell lines. The pyrazolone 2 and cyanoethanohydrazone 5 derivatives exhibited the most potency, which was demonstrated by their molecular docking towards the CDK-5 enzyme. The binding energies of compounds 2 and 5 were - 6.6320 kcal/mol (with RMSD of 0.9477 Å) and - 6.5696 kcal/mol (with RMSD of 1.4889 Å), respectively, which were near to that of co-crystallized ligand (EFP). This implies a notably strong binding affinity towards the CDK-5 enzyme. Thus, pyrazolone derivative 2 would be considered a promising candidate for further optimization to develop new chemotherapeutic agents. In addition, the ADME (absorption, distribution, metabolism, and excretion) analyses displayed its desirable drug-likeness and oral bioavailability properties.


Other data

Title Synthesis and in silico studies of certain benzo[f]quinoline-based heterocycles as antitumor agents
Authors El-Helw, Eman A. E. ; Asran, Mahmoud; Azab, Mohammad E; Helal, Maher H; Alzahrani, Abdullah Y A; Ramadan, Sayed 
Keywords Antiproliferative;Benzo[f]quinoline;Chromene;Cyanoacetohydrazone;Docking;In silico studies
Issue Date 5-Jul-2024
Publisher Springer Nature
Journal Scientific Reports 
Volume 14
ISSN 2045-2322
DOI 10.1038/s41598-024-64785-z
PubMed ID 38969677

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