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通过肉桂酸和没食子酸对多药耐药菌进行计算机对接、耐药性调节及生物膜基因表达研究

In Silico Docking, Resistance Modulation and Biofilm Gene Expression in Multidrug-Resistant via Cinnamic and Gallic Acids.

作者信息

Abdelaziz Neveen A, Elkhatib Walid F, Sherif Mahmoud M, Abourehab Mohammed A S, Al-Rashood Sara T, Eldehna Wagdy M, Mostafa Nada M, Elleboudy Nooran S

机构信息

Department of Microbiology and Immunology, Faculty of Pharmacy, Ahram Canadian University, Sixth of October City 12451, Egypt.

Department of Microbiology and Immunology, Faculty of Pharmacy, Ain Shams University, African Union Organization St., Abbassia, Cairo 11566, Egypt.

出版信息

Antibiotics (Basel). 2022 Jun 28;11(7):870. doi: 10.3390/antibiotics11070870.

Abstract

Despite the mounting global burden of antimicrobial resistance (AMR), the generation of new classes of effective antimicrobials still lags far behind. The interplay between multidrug resistance and biofilm formation in Acinetobacter baumannii has drastically narrowed the available therapeutic choices. The use of natural compounds holds promise as an alternate option for restoring the activity of existing antibiotics and attenuating virulence traits through reduced biofilm formation. This study aimed to evaluate the modulatory effect of combining cinnamic and gallic acids at ½MIC with various antibiotics against multidrug-resistant (MDR) A. baumannii clinical isolates as well as study the effect on the expression of the biofilm-associated genes (bap, csuE, ompA) via quantitative, real-time PCR. Combining cinnamic or gallic acid with imipenem, amikacin or doxycycline resulted in significant reduction of resistance (p < 0.05). On the contrary, no effect was recorded when both acids were combined with levofloxacin, and only cinnamic acid had a synergistic effect with colistin. The transcriptomic changes of biofilm-related genes in the presence of gallic acid at ½MIC were compared with untreated control samples. The fold expression values proved that gallic acid substantially down-regulated the respective genes in all five strong biofilm formers. Molecular docking studies of gallic and cinnamic acids on target genes revealed good binding affinities and verified the proposed mechanism of action. To the best of our knowledge, this is the first report on the effect of gallic acid on the expression of bap, csuE and ompA genes in A. baumannii, which may permit its use as an adjunct anti-virulence therapeutic strategy.

摘要

尽管全球抗菌药物耐药性(AMR)负担日益加重,但新型有效抗菌药物的研发仍远远滞后。鲍曼不动杆菌中多重耐药与生物膜形成之间的相互作用极大地限制了可用的治疗选择。使用天然化合物有望成为恢复现有抗生素活性并通过减少生物膜形成来减弱毒力特征的替代选择。本研究旨在评估将肉桂酸和没食子酸以½MIC浓度与各种抗生素联合使用对多重耐药(MDR)鲍曼不动杆菌临床分离株的调节作用,并通过定量实时PCR研究其对生物膜相关基因(bap、csuE、ompA)表达的影响。将肉桂酸或没食子酸与亚胺培南、阿米卡星或多西环素联合使用可显著降低耐药性(p < 0.05)。相反,当两种酸与左氧氟沙星联合使用时未观察到效果,且只有肉桂酸与黏菌素具有协同作用。将½MIC浓度的没食子酸存在下生物膜相关基因的转录组变化与未处理的对照样品进行比较。倍数表达值证明没食子酸在所有五个强生物膜形成菌株中均显著下调了各自的基因。没食子酸和肉桂酸对靶基因的分子对接研究显示出良好的结合亲和力,并验证了所提出的作用机制。据我们所知,这是关于没食子酸对鲍曼不动杆菌中bap、csuE和ompA基因表达影响的首次报道,这可能使其作为一种辅助抗毒力治疗策略得以应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c36/9311515/5284f4ba8a49/antibiotics-11-00870-g001.jpg

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