| Literature DB >> 22902882 |
Azza Taher Taher1, Sahar Mahmoud Abou-Seri.
Abstract
Several novel 6-aryl-5-cyano thiouracil derivatives were synthesized and explored for their activities as antibacterial, antifungal and anticancer agents. The antimicrobial evaluation revealed that compounds 7b and 7c possessed superior antibacterial activity against the Gram positive bacteria S. aureus and B. subtilis compared to the reference drug amoxicillin. Moreover, compound 4i was found to be a broad spectrum antimicrobial agent and it also exhibited the highest antifungal activity against C. albicans, even higher than the reference drug amphotericin B (MIC = 2.34, 3.00 μg/mL respectively). Selected compounds were tested for in vitro cytotoxicity at a single 10(-5) M concentration in accordance to the NCI (USA) protocol. The preliminary screening results showed that most of the compounds had limited cytotoxic activity against renal cancer UO-31 and/or A498 cell lines. Nevertheless, compounds 6d and 6i displayed potent growth inhibitory effect toward non-small cell lung cancer HOP-92 and leukemia MOLT-4 cell lines, respectively.Entities:
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Year: 2012 PMID: 22902882 PMCID: PMC6268711 DOI: 10.3390/molecules17089868
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of some potent antimicrobial and anticancer 6-aryl-5-cyano-2-thiouracil lead compounds.
Scheme 1Synthetic pathway for target compounds 4a–i and 6a–i.
Figure 2Possible tautomeric structures of compounds 6a–i and 13C-NMR chemical shifts of reported thiouracils.
Scheme 2Synthetic pathways for compounds 7a–c and 9.
Figure 3Possible tautomeric structures of compounds 7a–c.
Antimicrobial activity of the synthesized compounds expressed as minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC) and concentration that inhibit 50% of microorganisms (IC50) in µg /mL against the pathological strains based on two fold serial dilution technique.
| Compound | Gram positive bacteria | Gram negative bacteria | Fungi | ||||
|---|---|---|---|---|---|---|---|
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
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| MIC | >50 | >50 | |||||
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| MIC | >50 | >50 | >50 | >50 | >50 | >50 | |
| MBC | >50 | >50 | >50 | >50 | >50 | >50 | |
| IC50 | >50 | >50 | >50 | >50 | >50 | >50 | |
| MIC | > 50 | > 50 | |||||
| MBC | > 50 | > 50 | |||||
| IC50 | > 50 | > 50 | |||||
| MIC | >50 | >50 | >50 | >50 | >50 | >50 | |
| MBC | >50 | >50 | >50 | >50 | >50 | >50 | |
| IC50 | >50 | >50 | >50 | >50 | >50 | >50 | |
| MIC | >50 | >50 | >50 | >50 | >50 | >50 | |
| MBC | >50 | >50 | >50 | >50 | >50 | >50 | |
| IC50 | >50 | >50 | >50 | >50 | >50 | >50 | |
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | >50 | >50 | |
| MBC | >50 | >50 | >50 | >50 | >50 | >50 | |
| IC50 | >50 | >50 | >50 | >50 | >50 | >50 | |
| MIC | >50 | >50 | >50 | >50 | >50 | >50 | |
| MBC | >50 | >50 | >50 | >50 | >50 | >50 | |
| IC50 | >50 | >50 | >50 | >50 | >50 | >50 | |
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | >50 | |||
| MBC | >50 | >50 | >50 | >50 | |||
| IC50 | >50 | >50 | >50 | >50 | |||
| MIC | >50 | >50 | >50 | ||||
| MBC | >50 | >50 | >50 | ||||
| IC50 | >50 | >50 | >50 | ||||
| MIC | 1.25 | 150.00 | NA | NA | NA | NA | |
| MIC | NA | NA | 1.00 | 8.00 | NA | NA | |
| MIC | NA | NA | NA | NA | 3.00 | 1.25 | |
Figure 4The antimicrobial spectrum of tested compounds.
Cytotoxic activity of the tested compounds against a panel of 60 cancer cell lines at 10 µM concentration.
| Compound | Mean growth, % | Range of growth, % | Panel | Most sensitive cell lines |
|---|---|---|---|---|
| growth, % | ||||
| 102.9 | 76.85–126.64 | Renal Cancer | UO-31 (76.85) | |
| 102.53 | 81.19–121.32 | Renal Cancer | A498 (81.19) | |
| 104.95 | 82.37–133.71 | Renal Cancer | UO-31 (82.37) | |
| 105.24 | 76.99–127.08 | Melanoma | L OX IMVI (76.99) | |
| Renal Cancer | 786-0 (83.54) , UO-31 (84.31) | |||
| 102.14 | 80.39–119.48 | Renal Cancer | A498 (85.49) , UO-31 (80.39) | |
| 103.26 | 80.27–121.43 | Renal Cancer | A498 (80.27) | |
| 102.26 | 80.07–117.90 | Renal Cancer | A498 (80.07) | |
| 89.03 | 41.03–118.60 | Leukemia | HL-60(TB) (75.34), K-562 (73.85), MOLT-4 (73.33), | |
| RPMI-8226 (72.35), SR (79.59). | ||||
| EKVX (79.94), | ||||
| Non Small Cell Lung Cancer | HCT-116 (74.54), | |||
| HTC-15 (80.89). | ||||
| SF-295 (81.77). | ||||
| Colon Cancer | SK-MEL-2 (82.18), | |||
| CNS Cancer | UACC-62 (80.12) | |||
| Melanoma | 780-0 (73.64), A498 (75.93), CAKI-1 (71.34), UO-31 (80.25). | |||
| Renal Cancer | MCF-7 (83.81), T-47D (74.23), MDA-MB-468 (73.27) | |||
| Breast Cancer | ||||
| 101.92 | 82.81–119.49 | Renal Cancer | UO-31 (82.81) | |
| 102.3 | 78.50–121.80 | Non-Small Cell Lung Cancer | HOP-92 (85.86) | |
| Renal Cancer | ||||
| A498 (78.50), UO-31 (86.29) | ||||
| 102.98 | 83.81–124.78 | Renal Cancer | A498 (84.19), UO-31 (83.81) | |
| 101.72 | 73.09–114.65 | Renal Cancer | UO-31 (73.09) | |
| 102.41 | 42.38–119.33 | Leukemia | ||
| Melanoma | L OX IMVI (75.06) | |||
| Renal Cancer | 786-0 (81.16), UO-31 (80.26) |