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Design, Synthesis, <i>in Vitro</i>Antibacterial Activity, and Docking Studies of New Rhodanine Derivatives
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作者 Aisha Abusetta Jowhara Alumairi +7 位作者 Mariam Y. Alkaabi Ruba Al Ajeil Asma Abu Shkaidim Dana Akram J. Pajak Mohammad A. Ghattas noor atatreh Shaikha S. AlNeyadi 《Open Journal of Medicinal Chemistry》 2020年第1期15-34,共20页
Bacterial infections present a serious challenge to healthcare practitioners due to the emergence of resistance to numerous conventional antibacterial drugs. Therefore, new bacterial targets and new antimicrobials are... Bacterial infections present a serious challenge to healthcare practitioners due to the emergence of resistance to numerous conventional antibacterial drugs. Therefore, new bacterial targets and new antimicrobials are unmet medical needs. Rhodanine derivatives are known to possess potent antimicrobial activities. In this study, we determined the activity spectrum of a series of new rhodanine derivatives against representative Gram-positive and Gram-negative bacterial strains. Compounds 3a and 5a had the highest activity with minimum inhibitory concentrations in the range of 1.12 - 2.5 μg/mL. Transmission electron microscope results confirmed that activities against bacteria occurred via rupturing of the cell wall. Molecular modeling results suggested that rhodanine derivatives have the potential to irreversibly bind to the penicillin-binding protein (PBP) Ser62 residue in the active site. Thus, our results suggested that these rhodanine derivatives could be potential antibacterial drug candidates with strong activity against Gram-negative bacteria. 展开更多
关键词 RHODANINE Compounds PBP Β-LACTAMASE Enzyme DOCKING
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Anti-Cancer Activity and Molecular Docking of Some Pyrano[3,2&#8209;c]quinoline Analogues
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作者 Abdeltawab M. Saeed Ibrahim M. Abdou +3 位作者 Alaa A. Salem Mohammad A. Ghattas noor atatreh Shaikha S. AlNeyadi 《Open Journal of Medicinal Chemistry》 2020年第1期1-14,共14页
Quinoline analogues exhibited diversified biological activities depending on the structure type. A number of natural products with pyrano[3,2-c]quinolone structural motifs and patented chromenes were reported as promi... Quinoline analogues exhibited diversified biological activities depending on the structure type. A number of natural products with pyrano[3,2-c]quinolone structural motifs and patented chromenes were reported as promising cytotoxic agents. A molecular docking study was employed to investigate the binding and functional properties of 3-amino pyranoquinolinone 2a-c as anti-cancer agents. The three 3-amino pyranoquinolinone 2a-c showed an interesting ability to intercalate the DNA-topoisomerase complex and were able to obtain energetically favorable binding modes (&#8722;8.3 - &#8722;7.5 kcal/mol). Compound 2c containing butyl chain superiority over the other two compounds 2a-b which appeared to be involved in arene-H interactions with the two dG13 aromatic centers. The butyl chain also appeared to be immersed into a side subpocket formed by the side chains of Asn520 and Glu522 and the backbone amide of Arg503, Gly504, Lys505 and Ile506. Hence, the 3-amino pyranoquinolinone 2c used as starting material to prepare derivatives of pyrano[3,2-c]quinolone containing 1,2,4-triazine ring 4a-b which will enhance the anti-cancer activity. Pyrano[3,2-c]quinoline-2,5-diones 2a-c and 4a-b were evaluated in vitro on cell lines Ehrlich Ascites carcinoma cells (EAC), liver cancer cell line Hep-G2 and breast cancer cell line MCF-7 for the development of novel anticancer agents. The screening results revealed that compounds 4a-b were found most active candidates as anticancer agents. 展开更多
关键词 Pyrano[3 2-c]quinoline Molecular DOCKING ANTICANCER
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