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评估抗生素亚抑菌剂量对群体感应依赖性毒力及其表型的影响。

Evaluating the effect of antibiotics sub-inhibitory dose on  quorum sensing dependent virulence and its phenotypes.

作者信息

Aleanizy Fadilah Sfouq, Alqahtani Fulwah Y, Eltayb Esra Kamal, Alrumikan Norah, Almebki Renad, Alhossan Abdulaziz, Almangour Thamer A, AlQahtani Hajar

机构信息

Department of Pharmaceutics, College of Pharmacy, King Saud University, P.O. Box 22452 Riyadh 11495, Saudi Arabia.

Department of Clinical Pharmacy, College of Pharmacy, King Saud University, P.O. Box 22452 Riyadh 11495, Saudi Arabia.

出版信息

Saudi J Biol Sci. 2021 Jan;28(1):550-559. doi: 10.1016/j.sjbs.2020.10.040. Epub 2020 Oct 28.

Abstract

The opportunistic virulence controlled by quorum sensing (QS) also identified as, cell-cell communication. QS system is organized by the LasI-LasR and the RhlI-RhlR components. Provided that QS tends to perform a key role in virulence gene expression and host defence function, QS inhibitors have been proposed as potential antipseudomonal therapies. Sub-inhibitory concentrations (sub-MIC) of antibiotics, although having biostatic effect on bacteria, but can interfere with bacterial QS system and virulence. This research aimed to examine the impact of sub-MIC of azithromycin, imipenem, cefepime and piperacillin/tazobactam on the QS-dependent virulence including pyocyanin and biofilm production, haemolysin, protease and DNase in wildtype and mutant strains; transcriptional-regulator (ΔLasR), autoinducer synthesis protein (ΔLasI), transcriptional-regulator (ΔRhlR), protease precursor (ΔLasA) and double regulators mutants (ΔLasR/RhlR). The growth of all strains showed similar pattern, however, in presence of antibiotics significant growth variation was observed among mutant strains when compared to wild type strain. Antimicrobial activity tested by agar diffusion method of all antibiotics on all strains were used to compare the zones of therapeutic and sub-MIC doses showing a significant difference in the inhibition zone. QS-dependant virulence as biofilm, pyocyanin, protease, haemolysin and DNase production showed significant variation on all strains compared to wild type in response to antibiotics used at sub-MIC doses. In conclusion well known antibiotics can be used in sub-MIC doses to decrease the virulence of in addition to overcoming the major side effect of the high doses and the occurrence of resistance.

摘要

由群体感应(QS)控制的机会性毒力也被认为是细胞间通讯。QS系统由LasI-LasR和RhlI-RhlR组件组成。鉴于QS在毒力基因表达和宿主防御功能中往往发挥关键作用,QS抑制剂已被提议作为潜在的抗假单胞菌疗法。抗生素的亚抑制浓度(亚MIC)虽然对细菌有抑菌作用,但可干扰细菌的QS系统和毒力。本研究旨在检测阿奇霉素、亚胺培南、头孢吡肟和哌拉西林/他唑巴坦的亚MIC对野生型和突变株中包括绿脓菌素和生物膜产生、溶血素、蛋白酶和DNA酶在内的QS依赖性毒力的影响;转录调节因子(ΔLasR)、自诱导物合成蛋白(ΔLasI)、转录调节因子(ΔRhlR)、蛋白酶前体(ΔLasA)和双调节突变体(ΔLasR/RhlR)。所有菌株的生长呈现相似模式,然而,与野生型菌株相比,在抗生素存在下,突变株之间观察到显著的生长差异。通过琼脂扩散法对所有菌株检测所有抗生素的抗菌活性,以比较治疗剂量和亚MIC剂量的抑菌圈,结果显示抑菌圈存在显著差异。与野生型相比,在亚MIC剂量使用抗生素时,所有菌株的生物膜、绿脓菌素、蛋白酶、溶血素和DNA酶产生等QS依赖性毒力表现出显著差异。总之,除了克服高剂量的主要副作用和耐药性的发生外,已知抗生素可以以亚MIC剂量使用以降低毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c3/7785434/858930e2b687/gr1.jpg

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