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Synthesis and Biological Activity of Mono- and Di-N-acylated Aminoglycosides

机译:单-和二-N-酰化氨基糖苷的合成及生物活性

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Despite issues with otoephrotoxicity and bacterial resistance, aminoglycosides (AGs) remain an effective and widely used class of antibacterial agents. For decades now, efforts toward the development of novel AGs with potential to overcome some of these problems have been major research focuses. 1-N-Acylation, especially gamma-amino-beta-hydroxybutyrate (AHB) derivatization, has proven to be one of the most successful strategies for improving the overall properties of AGs, including their ability to avoid certain resistance mechanisms. More recently, 6'-N-acylation arose as another possible strategy to improve the properties of these drugs. In this study, we report on the glycinyl, carboxybenzyl, and AHB mono- and diderivatization at the 1-, 6'-, and/or 4'''-amines of the AGs amikacin, kanamycin A, netilmicin, sisomicin, and tobramycin. We also present the antibacterial activities and the reduced reactivity of AG-modifying enzymes (AMEs) toward these new AG derivatives, and identify the AMEs present in the bacterial strains tested.
机译:尽管存在耳/肾毒性和细菌耐药性问题,但氨基糖苷类(AGs)仍然是一类有效且广泛使用的抗菌剂。几十年来,致力于开发有潜力克服其中一些问题的新型AG的努力一直是主要的研究重点。 1-N-酰化,尤其是γ-氨基-β-羟基丁酸酯(AHB)衍生化,已被证明是改善AGs总体特性(包括避免某些耐药机制的能力)的最成功策略之一。最近,出现了6'-N-酰化作为改善这些药物性质的另一种可能策略。在这项研究中,我们报告了AG的阿米卡星,卡那霉素A,奈替米星,西索米星和妥布霉素在1-,6'-和/或4'''-胺处的甘氨酰,羧基苄基和AHB的单-和去唾液酸化作用。我们还介绍了AG修饰酶(AME)对这些新的AG衍生物的抗菌活性和降低的反应活性,并鉴定了测试的细菌菌株中存在的AME。

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