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Antimicrobial and antiproliferative activity studies of some new quinoline-3-carbaldehyde hydrazone derivatives. | LitMetric

AI Article Synopsis

  • A total of 22 quinoline-3-carbaldehyde hydrazone derivatives were synthesized and tested for antimicrobial and cytotoxic activities, focusing particularly on compounds 3q5 and 3q6 against MRSA.
  • While these derivatives generally showed weaker antimicrobial effects than standard drugs, 3q5 and 3q6 demonstrated promising activity with a minimum inhibitory concentration (MIC) of 16 µg/ml.
  • The cytotoxic effects were also limited, with certain compounds like 3q12, 3q17, and 3q22 reducing cell viability in A549 cells, while the molecular analysis revealed that 3q6 exhibited the most stable electronic structure and formed a significant bond in the DNA topoisomerase

Article Abstract

In this study, a total of 22 piece quinoline-3-carbaldehyde hydrazone derivative compounds were designed and synthesized, 2 of which were not original, their antimicrobial activities were determined with microdilution method and their in vitro cytotoxic effect was investigated in MCF-7 and A549 cells by MTT assay. When the activity results are examined, although the antimicrobial effects of quinoline derivatives, in general, are weaker than standard drugs; 3q5 and 3q6 against MRSA showed promising activity with MIC:16 µg/ml compared to reference drugs. Compounds generally showed weaker cytotoxic activity on the A549 and MCF-7 cell line. 3q12, 3q17 and 3q22 at 100 µM reduced cell viability to 59.28%, 76.24% and 72.92% on A549 cells, respectively. Compound 3q6, one of the most effective compounds against MRSA, formed a 2.10 Å long hydrogen bond between the quinoline nitrogen and ARG132 in the DNA topoisomerase IV active site (PDB: 3FV5). Theoretical ADME profiles of all compounds comply with Lipinski and other limiting rules. In addition, MEP analysis of 3q6, geometric optimization and molecular reactivity analysis were calculated with the 6-311G (d,p) base set DFT/B3LYP theory, and ΔE = E-E, which is a measure of the stable structure of the molecule, was calculated as 0.13377 for 3q6 and had the most stable electronic structure among all compounds.

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http://dx.doi.org/10.1016/j.bioorg.2020.104014DOI Listing

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