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Investigating the Antibacterial Activity of Biphenylthiazoles against Methicillin- and Vancomycin-Resistant Staphylococcus aureus (MRSA and VRSA)

机译:研究联苯噻唑类药物对耐甲氧西林和万古霉素金黄色葡萄球菌(MRSA 和 VRSA)的抗菌活性

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摘要

Phenylthiazoles were reported previously as a new scaffold with antibacterial activity against an array of multidrug-resistant staphylococci. However, their promising antibacterial activity was hampered in large part by their short half-life due to excessive hepatic clearance. Close inspection of the structure-activity-relationships (SARs) of the phenylthiazoles revealed two important structural features necessary for antibacterial activity (a nitrogenous and a lipophilic component). Incorporating the nitrogenous part within a pyrimidine ring resulted in analogues with a prolonged half-life, while the biphenyl moiety revealed the most potent analogue 1b. In this study, advantageous moieties have been combined to generate a new hybrid scaffold of 5-pyrimidinylbiphenylthiazole with the objective of enhancing both anti-MRSA activity and drug-like properties. Among the 37 tested biphenylthiazoles, piperazinyl-containing derivatives 10, 30, and 36 were the most potent analogues with MIC values as low as 0.39 mu g/mL. Additionally, 36 exhibited significant improvement in stability to hepatic metabolism.
机译:苯基噻唑类药物以前被报道为一种新的支架,对一系列耐多药葡萄球菌具有抗菌活性。然而,由于肝脏清除率过高,它们半衰期短,在很大程度上阻碍了它们有希望的抗菌活性。仔细检查苯基噻唑的构效关系(SAR)揭示了抗菌活性所必需的两个重要结构特征(含氮和亲脂性成分)。将含氮部分掺入嘧啶环内导致半衰期延长的类似物,而联苯部分揭示了最有效的类似物1b。在这项研究中,有利的部分被组合在一起,产生了一种新的5-嘧啶基联苯噻唑的杂化支架,目的是增强抗MRSA活性和类药物特性。在测试的 37 种联苯噻唑中,含哌嗪基的衍生物 10、30 和 36 是最有效的类似物,MIC 值低至 0.39 μ g/mL。此外,36 例在肝脏代谢稳定性方面表现出显着改善。

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