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苄达明逆转革兰氏阴性菌中TMexCD-TOprJ介导的高水平替加环素耐药性。

Benzydamine Reverses TMexCD-TOprJ-Mediated High-Level Tigecycline Resistance in Gram-Negative Bacteria.

作者信息

Tong Ziwen, Xu Tianqi, Deng Tian, Shi Jingru, Wang Zhiqiang, Liu Yuan

机构信息

College of Veterinary Medicine, Yangzhou University, Yangzhou 225009, China.

Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Joint International Research Laboratory of Agriculture and Agri-Product Safety, The Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.

出版信息

Pharmaceuticals (Basel). 2021 Sep 7;14(9):907. doi: 10.3390/ph14090907.

Abstract

Recently, a novel efflux pump gene cluster called and its variants have been identified, which undermine the antibacterial activity of tigecycline, one of the last remaining options effective against multidrug-resistant (MDR) Gram-negative bacteria. Herein, we report the potent synergistic effect of the non-steroidal anti-inflammatory drug benzydamine in combination with tigecycline at sub-inhibitory concentrations against various -positive Gram-negative pathogens. The combination of benzydamine and tigecycline killed all drug-resistant pathogens during 24 h of incubation. In addition, the evolution of tigecycline resistance was significantly suppressed in the presence of benzydamine. Studies on the mechanisms of synergism showed that benzydamine disrupted the bacterial proton motive force and the functionality of this kind of novel plasmid-encoded resistance-nodulation-division efflux pump, thereby promoting the intracellular accumulation of tigecycline. Most importantly, the combination therapy of benzydamine and tigecycline effectively improved the survival of larvae compared to tigecycline monotherapy. Our findings provide a promising drug combination therapeutic strategy for combating superbugs carrying the gene.

摘要

最近,一种名为 的新型外排泵基因簇及其变体已被鉴定出来,它们会削弱替加环素的抗菌活性,替加环素是对抗多重耐药(MDR)革兰氏阴性菌的最后有效选择之一。在此,我们报告了非甾体抗炎药苄达明与替加环素在亚抑菌浓度下联合使用对各种革兰氏阴性病原体的强效协同作用。苄达明和替加环素的组合在孵育24小时内杀死了所有耐药病原体。此外,在苄达明存在的情况下,替加环素耐药性的演变受到显著抑制。协同作用机制研究表明,苄达明破坏了细菌的质子动力势以及这种新型质粒编码的耐药-结瘤-分裂外排泵的功能,从而促进了替加环素在细胞内的积累。最重要的是,与替加环素单药治疗相比,苄达明和替加环素的联合治疗有效地提高了 幼虫的存活率。我们的研究结果为对抗携带 基因的超级细菌提供了一种有前景的联合用药治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fea3/8470189/b15ad9b5af26/pharmaceuticals-14-00907-g001.jpg

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