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Synthesis, characterization, X-ray crystal structures of heterocyclic Schiff base compounds and in vitro cholinesterase inhibition and anticancer activity

Authors :
Farook Adam
Mohd. R. Razali
Md. Azharul Arafath
Fouad Saleih R. Al-Suede
Mohamed B. Khadeer Ahamed
Amin Malik Shah Abdul Majid
Hasnah Osman
Mohd. Zaheen Hassan
Saifullah Abubakar
Source :
Journal of Molecular Structure. 1149:216-228
Publication Year :
2017
Publisher :
Elsevier BV, 2017.

Abstract

Four heterocyclic embedded Schiff base derivatives (1–4) were synthesized and characterized by melting point, elemental analysis, FTIR, 1H, 13C NMR, UV–Visible spectral data. The structures of compounds 1, 2 and 4 were successfully established through single crystal X-ray diffraction analysis. In vitro cholinesterase inhibition assays showed that the cyclized derivative 1 displayed higher BuChE enzyme inhibitory activity with IC50 value of 1.45 ± 0.09 μM. The anti-proliferative efficacies of the compounds were also evaluated using human colorectal HCT 116 and breast MCF-7 adenocarcinoma cell lines. In addition, a human normal endothelial cell line (Ea.hy926) was also tested to assess the safety and selectivity of the compounds towards normal and cancer cells, respectively. Among the compounds tested, compound 2 displayed potent cytotoxic effect (IC50 = 34 μM) against HCT 116 cells with highest selectivity index of 3.1 with respect to the normal endothelial cells. Whereas, compound 4 exhibited significant anti-proliferative effect (IC50 = 21.1 μM) against MCF-7 cells with highest selectivity index of 3.3 with respect to the normal endothelial cells. The docking result of these compounds against hAChE showed potent activities with different binding modes. These compounds could be a promising pharmacological agent to treat cancer and Alzheimer's disease.

Details

ISSN :
00222860
Volume :
1149
Database :
OpenAIRE
Journal :
Journal of Molecular Structure
Accession number :
edsair.doi...........4cf68db32726ab18d5ae9841c6fe0c1e
Full Text :
https://doi.org/10.1016/j.molstruc.2017.07.092