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氨基胍腙(AGH's)作为金黄色葡萄球菌中诺氟沙星耐药性的调节剂,该金黄色葡萄球菌过表达NorA外排泵。

Aminoguanidine hydrazones (AGH's) as modulators of norfloxacin resistance in Staphylococcus aureus that overexpress NorA efflux pump.

作者信息

Dantas Natalina, de Aquino Thiago Mendonça, de Araújo-Júnior João Xavier, da Silva-Júnior Edeildo, Gomes Ednaldo Almeida, Gomes Antoniel Augusto Severo, Siqueira-Júnior José Pinto, Mendonça Junior Francisco Jaime Bezerra

机构信息

Laboratório de Genética de Microorganismo, Departamento de Biologia Molecular/CCEN/Universidade Federal da Paraíba-UFPB, 58051-970 João Pessoa, PB, Brazil.

Laboratório de Química Medicinal, Escola de Enfermagem e Farmácia, Universidade Federal de Alagoas/UFAL, 57072-970 Macéio, AL, Brazil.

出版信息

Chem Biol Interact. 2018 Jan 25;280:8-14. doi: 10.1016/j.cbi.2017.12.009. Epub 2017 Dec 5.

Abstract

One of the promising fields for improving the effectiveness of antimicrobial agents is their combination with efflux pump inhibitors (EPIs), which besides expanding the use of existing antibiotics. The goal of this research was to evaluate a series of aminoguanidine hydrazones (AGH's, 1-19) as antibacterial agents and NorA efflux pump inhibitors in Staphylococcus aureus strain SA-1199B. Molecular modeling and docking studies were also performed in order to explain at the molecular level the interactions of the compounds with the generated NorA efflux pump model. The MICs of the antibiotic and ethidium bromide were determined by microdilution assay in absence or presence of a subinhibitory concentration of aminoguanidine hydrazones and macrophages viability was determined through MTT assay. Bioinformatic software Swiss-Model and AutoDock 4.2 were used to perform modeling and docking studies, respectively. As results, all AGH's were able to potentiate the action for the antibiotic norfloxacin, causing MIC's reduction of 16-fold and 32-fold to ethidium bromide. In the cell viability test, the concentration of 10 μg/mL showed better results than 90% and the concentration of 1000 μg/mL showed the lowest viability, reaching a maximum of 50% for the analyzed aminoguanidine hydrazones. Molecular docking studies showed that both norfloxacin and derivative 13 were recognized by the same binding site of NorA pump, suggesting a competitive mechanism. The present work demonstrated for the first time that AGH derivatives have potential to be putative inhibitors of NorA efflux pump, showing a promising activity as an antibacterial drug development.

摘要

提高抗菌剂有效性的一个有前景的领域是将其与外排泵抑制剂(EPI)联合使用,这除了能扩大现有抗生素的使用范围。本研究的目的是评估一系列氨基胍腙(AGH,1 - 19)作为金黄色葡萄球菌SA - 1199B菌株中的抗菌剂和NorA外排泵抑制剂。还进行了分子建模和对接研究,以便在分子水平上解释化合物与生成的NorA外排泵模型的相互作用。在不存在或存在亚抑制浓度的氨基胍腙的情况下,通过微量稀释法测定抗生素和溴化乙锭的最低抑菌浓度(MIC),并通过MTT法测定巨噬细胞活力。分别使用生物信息学软件Swiss - Model和AutoDock 4.2进行建模和对接研究。结果显示,所有AGH都能够增强抗生素诺氟沙星的作用,使溴化乙锭的MIC降低16倍和32倍。在细胞活力测试中,10μg/mL的浓度显示出优于90%的效果,而1000μg/mL的浓度显示出最低的活力,对于所分析的氨基胍腙,最高可达50%。分子对接研究表明,诺氟沙星和衍生物13都被NorA泵的同一个结合位点识别,提示存在竞争机制。本研究首次证明AGH衍生物有潜力成为NorA外排泵的推定抑制剂,作为抗菌药物开发显示出有前景的活性。

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