首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Design, synthesis, antimicrobial evaluation and molecular docking studies of some new 2,3-dihydrothiazoles and 4-thiazolidinones containing sulfisoxazole
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Design, synthesis, antimicrobial evaluation and molecular docking studies of some new 2,3-dihydrothiazoles and 4-thiazolidinones containing sulfisoxazole

机译:一些新的2,3-二羟基唑和含磺酰唑唑和4-噻唑烷酮的设计,合成,抗菌评价和分子对接研究

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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.
机译:对现代药物的微生物耐药构成了现代医学的严重威胁。我们报道了新官能化2,3-二羟基噻唑和4-噻唑烷酮标记的设计,合成和体外抗微生物评价,标记为硫异恶唑部分。化合物8D对枯草芽孢杆菌(MIC,0.007μg/ ml)最活跃。此外,化合物7C-D和8C针对枯草芽孢杆菌和肺炎链球菌(MIC,0.03-0.06μg/ ml和0.06-0.12μg/ ml与氨苄青霉素0.24μg/ ml和0.12μg/ ml的显着的活性。分别)。化合物7A和7C-D对大肠杆菌(MIC,0.49-0.98μg/ ml与庆大霉素1.95μg/ ml)高效率。另一方面,化合物7e和9c的四重率比两性霉素B对抗综合血症术术。分子对接研究表明,合成化合物可作为二氢化酯合酶酶(DHPS)的抑制剂。本研究是未来设计更有效的抗菌剂的平台。

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