| Literature DB >> 28097906 |
Bassem H Naguib1,2, Hala B El-Nassan2, Tamer M Abdelghany3.
Abstract
Four series of pyridothienopyrimidin-4-one derivatives were designed and prepared to improve the pim-1 inhibitory activity of the previously reported thieno[2,3-b]pyridines. Significant improvement in the pim-1 inhibition and cytotoxic activity was achieved using structure rigidification strategy via ring closure. Six compounds (6c, 7a, 7c, 7d, 8b and 9) showed highly potent pim-1 inhibitory activity with IC50 of 4.62, 1.18, 1.38, 1.97, 8.83 and 4.18 μM, respectively. Four other compounds (6b, 6d, 7b and 8a) showed moderate pim-1 inhibition. The most active compounds were tested for their cytotoxic activity on three cell lines [MCF7, HCT116 and PC3]. Compounds 7a [the 2-(2-chlorophenyl)-2,3-dihydro derivative] and 7d [the 2-(2-(trifluoromethyl)-phenyl)-2,3-dihydro derivative] displayed the most potent cytotoxic effect on the three cell lines tested consistent with their highest estimated pim-1 IC50 values.Entities:
Keywords: Pyridothienopyrimidine; cytotoxic activity; pim-1 inhibitors; pyrido[3',2':4,5]thieno[3,2-d]pyrimidin-4(3H)-one
Mesh:
Substances:
Year: 2017 PMID: 28097906 PMCID: PMC6010143 DOI: 10.1080/14756366.2016.1261130
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.Pim-1 inhibitors under clinical and preclinical studies.
Figure 2.Designing pyridothienopyrimidinones as Pim-1 inhibitors.
Figure 3.Examples of benzothienopyrimidinones and benzofuropyrimidinones as Pim-1 inhibitors.
Results of pim-1 kinase inhibition achieved by the test compounds at 50 μM.
| Compound no. | % Inhibition | ||
|---|---|---|---|
| – | 16 | ND | |
| H | 37 | ND | |
| 2-ClC6H4 | 36 | >100 | |
| 2-FC6H4 | 61 | ND | |
| 2-OHC6H4 | 4.62 ± 0.039 | ||
| 2-CF3C6H4 | 54 | ND | |
| 2-ClC6H4 | |||
| 2-FC6H4 | 66 | ND | |
| 2-OHC6H4 | |||
| 2-CF3C6H4 | |||
| CH3 | 51 | ND | |
| CF3 | 8.83 ± 0.028 | ||
| C2H5 | 17 | ND | |
| CH2COCH3 | 4.18 ± 0.076 | ||
| CH2COOC2H5 | 31 | ND | |
| CH2COOH | 19 | ND | |
| 93 | ND | ||
Bold values indicated the most potent compounds.
ND: means not determined.
Figure 4.Percent inhibition of the test compounds and staurosporine (Sta) against pim-1 kinase.
Results of in vitro cytotoxic screening of compounds 6c, 7a, 7c, 7d, 8b and 9 on three cell lines.
| IC50 in μM | |||
|---|---|---|---|
| Compound no. | MCF7 | HCT116 | PC3 |
| 35.5 ± 1.30 | 63.3 ± 4.50 | 60.12 ± 4.65 | |
| 23.8 ± 0.40 | 18.26 ± 0.68 | 24.2 ± 0.91 | |
| 59.6 ± 1.20 | 180.69 ± 5.03 | 58.16 ± 3.48 | |
| 30.2 ± 0.80 | 30.03 ± 0.55 | 38.4 ± 1.07 | |
| 28.6 ± 1.00 | 23.48 ± 0.53 | 59.9 ± 2.48 | |
| 123.2 ± 12.00 | 151.33 ± 4.04 | 182.69 ± 12.07 | |
The values given are means of three experiments.
Figure 5.IC50 in μM of compounds 6c, 7a, 7c, 7d, 8b and 9 on three cell lines.