Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
Centre for Environment, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
J Med Chem. 2023 Aug 24;66(16):11078-11093. doi: 10.1021/acs.jmedchem.3c00368. Epub 2023 Jul 19.
The increasing resistance of bacteria to commercially available antibiotics threatens patient safety in healthcare settings. Perturbation of ion homeostasis has emerged as a potential therapeutic strategy to fight against antibacterial resistance and other channelopathies. This study reports the development of 8-aminoquinoline (QN) derivatives and their transmembrane Zn transport activities. Our findings showed that a potent QN-based Zn transporter exhibits promising antibacterial properties against Gram-positive bacteria with reduced hemolytic activity and cytotoxicity to mammalian cells. Furthermore, this combination showed excellent in vivo efficacy against . Interestingly, this combination prevented bacterial resistance and restored susceptibility of gentamicin and methicillin-resistant to commercially available β-lactam and other antibiotics that had lost their activity against the drug-resistant bacterial strain. Our findings suggest that the transmembrane transport of Zn by QN derivatives could be a promising strategy to combat bacterial infections and restore the activity of other antibiotics.
细菌对市售抗生素的耐药性不断增加,威胁着医疗机构中患者的安全。离子动态平衡的扰乱已成为一种对抗抗菌耐药性和其他通道病的潜在治疗策略。本研究报告了 8-氨基喹啉(QN)衍生物的开发及其跨膜 Zn 转运活性。我们的研究结果表明,一种有效的基于 QN 的 Zn 转运体对革兰氏阳性菌具有有前景的抗菌特性,其溶血活性降低,对哺乳动物细胞的细胞毒性降低。此外,该组合对 表现出优异的体内疗效。有趣的是,该组合可防止细菌耐药性的产生,并恢复了对庆大霉素和耐甲氧西林 的敏感性,使其对已失去活性的耐药菌株的β-内酰胺类和其他抗生素重新敏感。我们的研究结果表明,通过 QN 衍生物进行跨膜 Zn 转运可能是对抗细菌感染和恢复其他抗生素活性的有前途的策略。