| Literature DB >> 24494068 |
Bahram Letafat1, Raheleh Shakeri2, Saeed Emami3, Saeedeh Noushini4, Negar Mohammadhosseini4, Nayyereh Shirkavand1, Sussan Kabudanian Ardestani2, Maliheh Safavi5, Marjaneh Samadizadeh1, Aida Letafat6, Abbas Sha Ee4, Alireza Foroumadi4.
Abstract
OBJECTIVE(S): Chalcones and their rigid analogues represent an important class of small molecules having anticancer activities. Therefore, in this study the synthesis and cytotoxic activity of new 3-benzylidenchroman-4-ones were described as rigid chalcone analogues.Entities:
Keywords: 4-Chromanone; Chalcones; Cytotoxic activity; Synthesis
Year: 2013 PMID: 24494068 PMCID: PMC3909627
Source DB: PubMed Journal: Iran J Basic Med Sci ISSN: 2008-3866 Impact factor: 2.699
Figure 1Chalcones 1 and chalcone-like compounds 2 and 3 represent an important class of small molecules useful as cytotoxic agents. Structure of target compounds 4a-e and 5 were designed as new cytotoxic agents
Scheme 1Synthesis of key intermediate 8.Reagents and conditions: (a) 3-chloropropionic acid, CF3SO3H (3 equiv), 80°C, 30 min; (b) 2.0 M NaOH
Scheme 2Synthesis of designed compounds 4a-e and 5. Reagents and conditions: (a) appropriate alkyl iodide, K2CO3, DMF; (b) appropriate aldehyde, HCl, EtOH; (c) rhodium (III) chloride, H2O
Figure 2Cytotoxic effects of compounds on MDA-MB-231 cell line. Cell viability assays using MDA-MB-231 cells treated with increasing doses of etoposide (10, 15, 20 and 30 µg/ml) and synthesized compounds (0.5, 1, 5, and 10 µg/ml). *P<0.05 compared to DMSO control-treated MDA-MB-231 cells
Cytotoxic activity (IC50, µg/ml) of compounds 4a-e and 5 against different cell lines in comparison with etoposide
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Figure 5Acridine orange/ethidium bromide fluorescent staining of MDA-MB-231 cells for determine apoptosis: (a) DMSO 1% as control; (b) cells treated with IC50 concentration of compound 4a (c) cells treated with IC50 concentration of etoposide as positive control for 24 hr. White arrow indicates live cells and dashed arrow indicates apoptotic cells. The images of cells were taken with a fluorescence microscope at 400×