| Literature DB >> 33235695 |
Salimeh Mirzaei1,2, Maqsudjon Qayumov1, Fahimeh Gangi2, Javad Behravan1, Razieh Ghodsi1,2.
Abstract
OBJECTIVES: In the present study, a new series of oxazinonaphthalene-3-one analogs was designed and synthesized as novel tubulin inhibitors.Entities:
Keywords: Anticancer activity; Molecular docking; Oxazinonaphthalene-3-one; Resistant cancer cells; Tubulin polymerization
Year: 2020 PMID: 33235695 PMCID: PMC7671423 DOI: 10.22038/ijbms.2020.40845.9648
Source DB: PubMed Journal: Iran J Basic Med Sci ISSN: 2008-3866 Impact factor: 2.699
Figure 1Selected tubulin inhibitors and one of our designed compounds
Scheme 1.Reagents and conditions: (a) AcOH, MW (b) DMF, NaH, CH3I or benzyl bromide, rt
In vitro antiproliferative activities (IC50 (µM) a) of synthesized compounds and CA-4 against human cancer cell lines
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| H | CH3 | H | H | C | >100 | 75.5±5.21 | >100 | 58.72±4.33 |
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| H | OCH3 | H | H | C | ND | ND | ND | ND |
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| OCH3 | OCH3 | H | H | C | >100 | >100 | 31.5±2.35 | 46.7±3.89 |
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| OCH3 | OCH3 | OCH3 | H | C | ND | 47.6±3.94 | 24.3±2.78 | 52.8±3.98 |
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| OH | OCH3 | H | H | C | 26.87±3.67 | 15.31±2.91 | 23.47±1.84 | 14.73±2.34 |
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| OCH3 | OCH3 | OCH3 | H | N | ND | ND | ND | ND |
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| H | CH3 | H | CH3 | C | 30.74±3.84 | 40.9±4.24 | 24.3±2.63 | 32.6±3.84 |
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| OCH3 | OCH3 | H | CH3 | C | 33.43±3.71 | >100 | 26.91±2.72 | 31.4±2.56 |
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| OCH3 | OCH3 | OCH3 | CH3 | C | 32.5±3.21 | 9.05±1.83 | 12.2±1.45 | 18.3±2.23 |
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| H | CH3 | H | benzyl | C | 100±4.91 | ND | 31.5±3.25 | 28.32±2.45 |
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| H | OCH3 | H | benzyl | C | 98.11±4.56 | 70.9±4.76 | 20.7±2.11 | 25.68±2.17 |
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| OCH3 | OCH3 | H | benzyl | C | 30.3±2.44 | 71.10±5.36 | 18.70±1.84 | 24.4±2.16 |
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| OCH3 | OCH3 | OCH3 | benzyl | C | 11.17±1.57 | 20.81±2.15 | 4.47±1.14 | 19.88±2.19 |
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| 1.23±0.42 | 2.97±0.41 | 2.84±0.27 | 2.95±0.61 |
a compound concentration required to inhibit tumor cell proliferation by 50%. Data are presented as the mean±SD from the dose−response curves of three independent experiments
Figure 2Effect of compounds 5g on in vitro tubulin polymerization
Figure 3Flow cytometry analysis of compound 5g (A), 4d (B), and 5c (C) in A2780 cells
Figure 4(A) compound 5g in colchicine binding site of tubulin. (B and C) Hydrogen and Hydrophobic interactions of 5g with colchicine binding site of tubulin