Akhmouch Ahmed Amin, Hriouech Soukayna, Mzabi Aouatef, Tanghort Mariam, Chefchaou Hanane, Remmal Adnane, Chami Najat
Department of Biology, Faculty of Science Dhar El Mahraz, University Sidi Mohammed Ben Abdellah, Atlas-Fez 1796, Morocco.
Antibiotics (Basel). 2022 Jul 26;11(8):1002. doi: 10.3390/antibiotics11081002.
The purpose of the present study is twofold. First, it aims to evaluate the synergistic action of the ß-lactam antibiotic; AMX is associated with 1,8-cineole on six clinical isolates of ESBL-producing and strains. Second, it aims to determine the effect this association has on the ESBL enzymatic resistance mechanism. The synergistic action of AMX/1,8-cineole was evaluated using partial inhibitory concentrations (PIC), determined by a microplate, a checkerboard and time-kill assays. The effect of AMX/1,8-cineole associations on the ESBL enzymatic resistance mechanism was evaluated using a new optimized enzymatic assay. This assay was based on the determination of the AMX antibacterial activity when combined with 1,8-cineole (at subinhibitory concentrations) in the presence or absence of the ß-lactamase enzyme toward a sensitive strain. The results of both checkerboard and time-kill assays showed a strong synergistic action between AMX and 1,8-cineole. The results of the enzymatic assay showed that the combination of AMX with 1,8-cineole notably influences the enzymatic resistance of the reaction by decreasing the affinity of the β-lactam antibiotic, AMX, to the β-lactamase enzyme. All obtained results suggested that the AMX/1,8-cineole association could be employed in therapy to overcome bacterial resistance to AMX while reducing the prevalence of resistance.
本研究有两个目的。其一,旨在评估β-内酰胺抗生素阿莫西林(AMX)与1,8-桉叶素对六种产超广谱β-内酰胺酶(ESBL)菌株临床分离株的协同作用。其二,旨在确定这种联合对ESBL酶促耐药机制的影响。采用微孔板、棋盘法和时间杀菌试验测定的部分抑菌浓度(PIC)来评估AMX/1,8-桉叶素的协同作用。使用一种新的优化酶法来评估AMX/1,8-桉叶素联合对ESBL酶促耐药机制的影响。该方法基于在有或无β-内酰胺酶存在的情况下,测定AMX与1,8-桉叶素(亚抑菌浓度)联合时对敏感菌株的抗菌活性。棋盘法和时间杀菌试验的结果均显示AMX与1,8-桉叶素之间有很强的协同作用。酶法结果表明,AMX与1,8-桉叶素的联合通过降低β-内酰胺抗生素AMX与β-内酰胺酶的亲和力,显著影响反应的酶促耐药性。所有获得的结果表明,AMX/1,8-桉叶素联合可用于治疗,以克服细菌对AMX的耐药性,同时降低耐药性的发生率。