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In-Vitro Study the Antibacterial Activity of Bacteriocin against Stenotrophomonas Maltophilia and Evaluation its Synergism with some Antibiotics

机译:细菌素对嗜麦芽窄食单胞菌的抗菌活性的体外研究及其与某些抗生素的协同作用

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The core of the study is to screen the inhibitory effect of bacteriocin producing Lactobacillus acidophilus against isolated S. maltophilia and examine whether the combination of bacteriocin with antibiotics showed synergistic or antagonistic interaction. The majority of isolates were resistant to two antibiotics and the isolate coded S19 was resistant to the three antibiotics used, which is consider as multi-drugs resistant isolate and used for the synergy test. Initially, minimum inhibitory concentrations (MICs) of Ceftazidime (CAZ), Imipenem (IMP) and Minocycline (MIN) were determined using exponentially growing cultures of S. maltophilia. The MICs of antimicrobial were 64, 32 and 128μg/ml, respectively. When antimicrobial and bacteriocin combined in the checkerboard microtiter test, a synergistic effect was observed and the MICs decreased dramatically. All of the three antimicrobials with bacteiocin combinations showed synergy against the resistant S. maltophilia isolate (S19).A combination of Imipenem plus bacteiocin showed the highest syner-gistic effect among the combinations. FIC index of a combination of Imipenem, Ceftazidime and Minocyclin with bacteriocin, were 0.249, 0.093 and 0.312 for S. malto-philia isolate respectively. Antagonistic activity was not found in any of the combinations. In conclusion in the presence of bacteriocin, a lower Ceftazidime, Imipenem and Monocycline concentrations were needed to fully inhibit S. maltophilia .Checkerboard assay was appropriate method to calculate the MIC and combination testing of the bacteriocin and antibiotic as well as the fractional inhibitory concentration index (FICI) was applicable to aid in an interpretation of the combination testing results.
机译:该研究的核心是筛选产生细菌素的嗜酸乳杆菌对分离的嗜麦芽肿链球菌的抑制作用,并检查细菌素与抗生素的组合是否表现出协同或拮抗作用。大多数分离株对两种抗生素都有抗药性,而编码为S19的分离株对所用的三种抗生素有抗药性,这被认为是多药耐药性分离株,用于协同试验。最初,使用指数增长的嗜麦芽孢杆菌培养物确定头孢他啶(CAZ),亚胺培南(IMP)和米诺环素(MIN)的最低抑制浓度(MIC)。抗菌素的MIC分别为64、32和128μg/ ml。当抗菌素和细菌素在棋盘微量滴定试验中结合时,观察到协同作用,MIC显着下降。三种与细菌素结合的抗菌剂均显示出对耐药性嗜麦芽孢杆菌分离株(S19)的协同作用。亚胺培南与细菌素的结合表现出最高的协同作用。亚胺培南,头孢他啶和米诺环素与细菌素联合使用时的FIC指数分别为0.249、0.093和0.312。在任何组合中均未发现拮抗活性。总之,在存在细菌素的情况下,需要较低的头孢他啶,亚胺培南和单环素的浓度才能完全抑制嗜麦芽链球菌。棋盘试验是计算MIC以及对细菌素和抗生素进行联合测试以及分数抑制浓度指数的合适方法(FICI)适用于帮助解释组合测试结果。

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