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Design, synthesis, antimicrobial evaluation and molecular docking studies of some new 2,3-dihydrothiazoles and 4-thiazolidinones containing sulfisoxazole
被引:28
作者:
Nasr, Tamer
[1
]
Bondock, Samir
[2
,3
]
Eid, Sameh
[4
]
机构:
[1] Helwan Univ, Fac Pharm, Dept Pharmaceut Chem, Cairo 11795, Egypt
[2] Mansoura Univ, Fac Sci, Dept Chem, Mansoura, Egypt
[3] King Khalid Univ, Fac Sci, Dept Chem, Abha, Saudi Arabia
[4] BioMed X Innovat Ctr, Neuenheimer Feld 583, Heidelberg, Germany
关键词:
Antimicrobial agents;
molecular docking;
sulfonamide;
thiazole;
ANHYDRASE INHIBITORS INHIBITION;
BETA-CLASS ENZYME;
BIOLOGICAL EVALUATION;
DIHYDROPTEROATE SYNTHASE;
ANTICANCER AGENTS;
DERIVATIVES;
SULFONAMIDES;
ANTIBACTERIAL;
RESISTANCE;
THIAZOLE;
D O I:
10.3109/14756366.2015.1016514
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Microbial resistance to the available drugs poses a serious threat in modern medicine. We report the design, synthesis and in vitro antimicrobial evaluation of new functionalized 2,3-dihydrothiazoles and 4-thiazolidinones tagged with sulfisoxazole moiety. Compound 8d was most active against Bacillis subtilis (MIC, 0.007 mu g/mL). Moreover, compounds 7c-d and 8c displayed significant activities against B. subtilis and Streptococcus pneumoniae (MIC, 0.03-0.06 mu g/mL and 0.06-0.12 mu g/mL versus ampicillin 0.24 mu g/mL and 0.12 mu g/mL; respectively). Compounds 7a and 7c-d were highly potent against Escherichia coli (MIC, 0.49-0.98 mu g/mL versus gentamycin 1.95 mu g/mL). On the other hand, compounds 7e and 9c were fourfolds more active than amphotericin B against Syncephalastrum racemosum. Molecular docking studies showed that the synthesized compounds could act as inhibitors for the dihydropteroate synthase enzyme (DHPS). This study is a platform for the future design of more potent antimicrobial agents.
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页码:236 / 246
页数:11
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