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首页> 外文期刊>Bioconjugate Chemistry >Structure-Activity Relationship of Amino Acid Tunable Lipidated Norspermidine Conjugates: Disrupting Biofilms with Potent Activity against Bacterial Persisters
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Structure-Activity Relationship of Amino Acid Tunable Lipidated Norspermidine Conjugates: Disrupting Biofilms with Potent Activity against Bacterial Persisters

机译:氨基酸可调节的脂质化鸟苷的结构-活性关系缀合物:破坏生物膜具有针对细菌的有效活性。

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The emergence of bacterial resistance and biofilm associated infections has created a challenging situation in global health. In this present state of affairs where conventional antibiotics are falling short of being able to provide a solution to these problems, development of novel antibacterial compounds possessing the twin prowess of antibacterial and antibiofilm efficacy is imperative. Herein, we report a library of amino acid tunable lipidated norspermidine conjugates that were prepared by conjugating both amino acids and fatty acids with the amine functionalities of norspermidine through amide bond formation. These lipidated conjugates displayed potent antibacterial activity against various planktonic Gram-positive and Gram-negative bacteria including drug-resistant superbugs such as methicillin-resistant Staphylococcus aureus, vancomycin-resistant Enterococcus faecium, and beta-lactam-resistant Klebsiella pneumoniae. This class of nontoxic and fast-acting antibacterial molecules (capable of killing bacteria within 15 min) did not allow bacteria to develop resistance against them after several passages. Most importantly, an optimized compound in the series was also capable of killing metabolically inactive persisters and stationary phase bacteria. Additionally, this compound was capable of disrupting the preformed biofilms of S. aureus and E. coli. Therefore, this class of antibacterial conjugates have potential in tackling the challenging situation posed by both bacterial resistance as well as drug tolerance due to biofilm formation.
机译:细菌抗药性和生物膜相关感染的出现在全球健康中造成了挑战。在目前的状况下,常规的抗生素不足以解决这些问题,必须开发具有抗菌和抗生物膜功效双重能力的新型抗菌化合物。在这里,我们报告了一个氨基酸可调脂化的降鸟精m共轭物的文库,该共轭物是通过酰胺键形成将氨基酸和脂肪酸与鸟精m的胺官能团结合而制备的。这些脂质化的结合物显示出对各种浮游革兰氏阳性和革兰氏阴性细菌的有效抗菌活性,包括耐药性超级细菌,如耐甲氧西林的金黄色葡萄球菌,耐万古霉素的粪便肠球菌和耐β-内酰胺的肺炎克雷伯菌。这类无毒且作用迅速的抗菌分子(能够在15分钟内杀死细菌)不允许细菌经过数次传代而对它们产生抗药性。最重要的是,该系列中的优化化合物还能够杀死代谢不活跃的持久性物质和固定相细菌。另外,该化合物能够破坏金黄色葡萄球菌和大肠杆菌的预先形成的生物膜。因此,这类抗菌共轭物具有潜力应对由生物膜形成引起的细菌耐药性和药物耐受性带来的挑战性情况。

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