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Surprising Alteration of Antibacterial Activity of 5 ''-Modified Neomycin against Resistant Bacteria

机译:5''-修饰的新霉素对耐药细菌的抗菌活性惊人改变

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摘要

A facile synthetic protocol for the production of neomycin B derivatives with various modifications at the 5 '' position has been developed. The structural activity relationship (SAR) against aminoglycoside resistant bacteria equipped with various aminoglycoside-modifying enzymes (AMEs) was investigated. Enzymatic and molecular modeling studies reveal that the superb substrate promiscuity of AMEs allows the resistant bacteria to cope with diverse structural modifications despite the observation that several derivatives show enhanced antibacterial activity compared to the parent neomycin. Surprisingly, when testing synthetic neomycin derivatives against other human pathogens, two leads exhibit prominent activity against both methicillin-resistant Staphylococcus aureus (MRSA) and vancomycin-resistant enterococci (VRE) that are known to exert a high level of resistance against clinically used aminoglycosides. These findings can be extremely useful in developing new aminoglycoside antibiotics against resistant bacteria. Our result also suggests that. new biological and antimicrobial activities can be obtained by chemical modifications of old drugs.
机译:已经开发了一种易于生产的合成方案,用于生产在5''位置进行了各种修饰的新霉素B衍生物。研究了对装备有各种氨基糖苷修饰酶(AMEs)的氨基糖苷抗性细菌的结构活性关系(SAR)。酶和分子建模研究表明,尽管观察到几种衍生物与母体新霉素相比显示出增强的抗菌活性,但AMEs的出色的底物混杂性使抗性细菌能够应对多种结构修饰。出乎意料的是,当测试针对其他人类病原体的合成新霉素衍生物时,两条引线均显示出对耐甲氧西林的金黄色葡萄球菌(MRSA)和耐万古霉素的肠球菌(VRE)的显着活性,已知它们对临床使用的氨基糖苷类药物具有很高的耐药性。这些发现对于开发针对耐药细菌的新型氨基糖苷类抗生素非常有用。我们的结果也表明这一点。通过对旧药物进行化学修饰可以获得新的生物和抗菌活性。

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