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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Various Evolutionary Trajectories Lead to Loss of the Tobramycin-Potentiating Activity of the Quorum-Sensing Inhibitor Baicalin Hydrate in Burkholderia cenocepacia Biofilms
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Various Evolutionary Trajectories Lead to Loss of the Tobramycin-Potentiating Activity of the Quorum-Sensing Inhibitor Baicalin Hydrate in Burkholderia cenocepacia Biofilms

机译:各种进化轨迹导致伯克德列风群中群中的批量传感抑制剂黄芩素水合物的蛤霉素增强活性丧失

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Combining antibiotics with potentiators that increase their activity is a promising strategy to tackle infections caused by antibiotic-resistant bacteria. As potentiators do not interfere with essential processes, it has been hypothesized that they are less likely to induce resistance. However, evidence supporting this hypothesis is lacking. In the present study, we investigated whether Burkholderia cenocepacia J2315 biofilms develop reduced susceptibility toward one such adjuvant, baicalin hydrate (BH). Biofilms were repeatedly and intermittently treated with tobramycin (TOB) alone or in combination with BH for 24 h. After treatment, the remaining cells were quantified using plate counting. After 15 cycles, biofilm cells were less susceptible to TOB and TOB + BH compared to the start population, and the potentiating effect of BH toward TOB was lost. Whole-genome sequencing was performed to probe which changes were involved in the reduced effect of BH, and mutations in 14 protein-coding genes were identified (including mutations in genes involved in central metabolism and in BCAL0296, encoding an ABC transporter). No changes in the MIC or MBC of TOB or changes in the number of persister cells were observed. However, basal intracellular levels of reactive oxygen species (ROS) and ROS levels found after treatment with TOB were markedly decreased in the evolved populations. In addition, in evolved cultures with mutations in BCAL0296, a significantly reduced uptake of TOB was observed. Our results indicate that B. cenocepacia J2315 biofilms rapidly lose susceptibility toward the antibiotic-potentiating activity of BH and point to changes in central metabolism, reduced ROS production, and reduced TOB uptake as mechanisms.
机译:将抗生素与增强者组合,增加他们的活动是一种有希望的抗性抗菌细菌引起的感染的策略。由于增强剂不会干扰基本流程,因此已经假设它们不太可能诱导阻力。但是,缺乏支持这一假设的证据。在本研究中,我们调查了Burkowneria Cenocepacia J2315 Biofilms是否对一个这样的佐剂,黄芩苷水合物(BH)产生降低的敏感性。将生物膜重复,并单独使用烟霉素(TOB)或与BH组合24小时。处理后,使用板计数量化剩余的细胞。与开始群相比,15次循环后,生物膜细胞对TOB和TOB + BH的影响较小,并且BH对TOB的增强效果丧失。对探针进行全基因组测序,探针涉及BH的降低的变化,并鉴定了14个蛋白质编码基因的突变(包括参与中央代谢和BCAL0296中的基因突变,编码ABC转运蛋白。观察到麦克风或MBC的变化或渗透细胞数量的变化。然而,在进化群体中,在用TOB处理后发现的反应性氧物质(ROS)和ROS水平的基础细胞内水平显着降低。此外,在BCAL0296中的突变中的进化培养物中,观察到染料的显着降低。我们的结果表明,B. Cenocepacia J2315 Biofilms迅速对BH的抗生素增强活性的敏感性迅速失去了敏感性,并指向中枢代谢的变化,降低了ROS生产和减少TOB吸收作为机制。

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