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侍奉两位主人:双重耐药对抗生素敏感性的影响。

Serving Two Masters: Effect of Dual Resistance on Antibiotic Susceptibility.

作者信息

Jeje Olusola, Ewunkem Akamu J, Jeffers-Francis Liesl K, Graves Joseph L

机构信息

Biology Department, North Carolina Agricultural and Technical State University, 1601 E Market Street, Greensboro, NC 27411, USA.

Department of Biological Sciences, Winston Salem State University, 601 S Martin Luther King Jr Drive, Winston Salem, NC 27110, USA.

出版信息

Antibiotics (Basel). 2023 Mar 17;12(3):603. doi: 10.3390/antibiotics12030603.

Abstract

The prevalence of multidrug-resistant bacteria and their increased pathogenicity has led to a growing interest in metallic antimicrobial materials and bacteriophages as potential alternatives to conventional antibiotics. This study examines how resistance to excess iron (III) influences the evolution of bacteriophage resistance in the bacterium . We utilized experimental evolution in to test the effect of the evolution of phage T7 resistance on populations resistant to excess iron (III) and populations without excess iron resistance. Phage resistance evolved rapidly in both groups. Dual-resistant (iron (III)/phage) populations were compared to their controls (excess iron (III)-resistant, phage-resistant, no resistance to either) for their performance against each stressor, excess iron (III) and phage; and correlated resistances to excess iron (II), gallium (III), silver (I) and conventional antibiotics. Excess iron (III)/phage-resistant populations demonstrated superior 24 h growth compared to all other populations when exposed to increasing concentrations of iron (II, III), gallium (III), ampicillin, and tetracycline. No differences in 24 h growth were shown between excess iron (III)/phage-resistant and excess iron (III)-resistant populations in chloramphenicol, sulfonamide, and silver (I). The genomic analysis identified selective sweeps in the iron (III) resistant (), phage-resistant ( →/→ lon, , gatT, ) and iron (III)/phage resistant populations (, and ). selected for resistance to both excess iron (III) and T7 phage showed some evidence of a synergistic effect on various components of fitness. Dual selection resulted in correlated resistances to ionic metals {iron (II), gallium (III), and silver (I)} and several conventional antibiotics. There is a likelihood that this sort of combination antimicrobial treatment may result in bacterial variants with multiple resistances.

摘要

多重耐药细菌的流行及其致病性的增加,使得人们对金属抗菌材料和噬菌体作为传统抗生素的潜在替代品越来越感兴趣。本研究考察了对过量铁(III)的抗性如何影响细菌中噬菌体抗性的进化。我们利用实验进化来测试噬菌体T7抗性进化对耐过量铁(III)群体和无过量铁抗性群体的影响。两组中噬菌体抗性均迅速进化。将双抗性(铁(III)/噬菌体)群体与其对照(耐过量铁(III)、耐噬菌体、对两者均无抗性)进行比较,考察它们对每种应激源(过量铁(III)和噬菌体)的抗性表现,以及与过量铁(II)、镓(III)、银(I)和传统抗生素的相关抗性。当暴露于浓度不断增加的铁(II、III)、镓(III)、氨苄青霉素和四环素时,耐过量铁(III)/噬菌体群体在24小时生长方面表现优于所有其他群体。在氯霉素、磺胺类药物和银(I)方面,耐过量铁(III)/噬菌体群体与耐过量铁(III)群体在24小时生长上没有差异。基因组分析确定了铁(III)抗性群体()、噬菌体抗性群体(→/→ lon、、gatT、)和铁(III)/噬菌体抗性群体(、和)中的选择性清除。选择出的对过量铁(III)和T7噬菌体均有抗性的群体在适应性的各个组成部分上显示出协同效应的一些证据。双重选择导致对离子金属{铁(II)、镓(III)和银(I)}和几种传统抗生素产生相关抗性。这种联合抗菌治疗有可能导致产生具有多重抗性的细菌变体。

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