Angiogenesis inhibition is a key step towards the designing of new chemotherapeutic agents. In a view to preparing new molecular entities for cancer treatment, eighteen 1,2,3-triazole-uracil ensembles 5a–r were designed and synthesized via the click reaction. The ligands were well characterized using 1H-, 13C-NMR, elemental analysis and ESI-mass spectrometry. The in silico binding propinquities of the ligands were studied sequentially in the active region of VEGFR-2 using the Molegro virtual docker. All the compounds produced remarkable interactions and potentially inhibitory ligands against VEGFR-2 were obtained with high negative binding energies. Drug-likeness was assessed from the ADME properties. Cytotoxicity of the test compounds was measured against HeLa and HUH-7 tumor cells and NIH/3T3 normal cells by MTT assay. Compound 5h showed higher growth inhibition activity than the positive control, 5-fluorouracil (5-FU), against both HeLa and HUH-7 cells with IC50 values of 4.5 and 7.7 μM respectively. Interestingly, the compounds 5a–r did not show any cytotoxicity towards the normal cell lines. The results advance the position of substituted triazoles in the area of drug design with no ambiguity.
Herein, a new tridentate (NNO) Schiff base ligand, (E)-4-[(quinoline-8-ylimino)methyl]benzene-1,2,3-
triol derived from the condensation of 8-aminoquinoline with 2,3,4-trihydroxy benzaldehyde is reported.
The ligand was complexed with certain metal ions like Co(II) (1), Ni(II) (2), Cu(II) (3), Zn(II) (4) and
were characterized by various spectroscopic and analytical techniques such as FT-IR, UV-Vis, 1H
NMR, 13C NMR, ESI-Mass, ESR, elemental analysis and magnetic susceptibility. Spectral data revealed
octahedral geometry for cobalt(II), nickel(II), copper(II) complexes and tetrahedral geometry for zinc(II)
complex. All the metal(II) complexes along with the Schiff base ligand were screened for their anticancer
activities. The CT-DNA binding studies revealed high binding propensity for metal complexes with
Kb values 1.50 × 104 M-1 for 1; 3.62 × 104 M-1 for 2; 2.53 × 104 M-1 for 3 and 1.8 × 104 M-1 for 4,
respectively. Anticancer studies against A549 & MCF-7 demonstrated excellent antiproliferative activity
with IC50 values in the range 17.62-48.82 μM. A standard drug cisplatin was employed to compare the
activity of metal complexes. The complexes exhibited remarkable antitumour activity due to their
high binding ability with DNA. It is interesting to observe that the complexes did not produce any
cytotoxicity towards the normal cell lines.
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