Reeves Craig M, Magallon Jesus, Rocha Kenneth, Tran Tung, Phan Kimberly, Vu Peter, Yi Yang, Oakley-Havens Crista L, Cedano José, Jimenez Verónica, Ramirez Maria S, Tolmasky Marcelo E
Center for Applied Biotechnology Studies, Department of Biological Science, California State University Fullerton, Fullerton, CA 92831, USA.
Antibiotics (Basel). 2020 Dec 31;10(1):29. doi: 10.3390/antibiotics10010029.
Clinical resistance to amikacin and other aminoglycosides is usually due to the enzymatic acetylation of the antimicrobial molecule. A ubiquitous resistance enzyme among Gram-negatives is the aminoglycoside 6'--acetyltransferase type Ib [AAC(6')-Ib], which catalyzes acetylation using acetyl-CoA as a donor substrate. Therapies that combine the antibiotic and an inhibitor of the inactivation reaction could be an alternative to treat infections caused by resistant bacteria. We previously observed that metal ions such as Zn or Cu in complex with ionophores interfere with the AAC(6')-Ib-mediated inactivation of aminoglycosides and reduced resistance to susceptibility levels. Ag recently attracted attention as a potentiator of aminoglycosides' action by mechanisms still in discussion. We found that silver acetate is also a robust inhibitor of the enzymatic acetylation mediated by AAC(6')-Ib in vitro. This action seems to be independent of other mechanisms, like increased production of reactive oxygen species and enhanced membrane permeability, proposed to explain the potentiation of the antibiotic effect by silver ions. The addition of this compound to harboring and cultures resulted in a dramatic reduction of the resistance levels. Time-kill assays showed that the combination of silver acetate and amikacin was bactericidal and exhibited low cytotoxicity to HEK293 cells.
对阿米卡星和其他氨基糖苷类药物的临床耐药性通常是由于抗菌分子的酶促乙酰化作用。革兰氏阴性菌中一种普遍存在的耐药酶是I b型氨基糖苷6'-乙酰转移酶[AAC(6')-Ib],它以乙酰辅酶A作为供体底物催化乙酰化反应。将抗生素与失活反应抑制剂联合使用的疗法可能是治疗耐药菌引起感染的一种替代方法。我们之前观察到,与离子载体络合的锌或铜等金属离子会干扰AAC(6')-Ib介导的氨基糖苷类药物失活,并降低耐药性至敏感水平。银最近作为氨基糖苷类药物作用的增强剂受到关注,但其作用机制仍在讨论中。我们发现醋酸银在体外也是AAC(6')-Ib介导的酶促乙酰化反应的强效抑制剂。这种作用似乎独立于其他机制,如为解释银离子增强抗生素作用而提出的活性氧生成增加和膜通透性增强等机制。将该化合物添加到携带[具体细菌名称未给出]和[具体细菌名称未给出]的培养物中,导致耐药水平显著降低。时间-杀菌试验表明,醋酸银与阿米卡星的组合具有杀菌作用,且对HEK293细胞的细胞毒性较低。