首页> 外文期刊>Journal of applied microbiology >Increasing the antibacterial activity of gentamicin in combination with extracted polyphosphate from Bacillus megaterium.
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Increasing the antibacterial activity of gentamicin in combination with extracted polyphosphate from Bacillus megaterium.

机译:与从巨大芽孢杆菌提取的多磷酸盐组合使用时,增加庆大霉素的抗菌活性。

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Aims: The aim of this research was production of polyphosphate (poly P) and study on its antibacterial effects. Methods and Results: Poly P granules in the cells were observed with the help of Albert staining and extracted by Mussig-Zufika method. Thin layer chromatography and nuclear magnetic resonance spectroscopy (31P NMR) were used to characterize properties of these granules. Relation of phosphorus consumption and poly P production with growth was determined by the vanado-molybdate colorimetric method. Among the 60 strains of bacteria isolated from the environmental samples, strain G11 showed ability for the formation of high levels of poly P. Phylogenetic analysis showed that this isolate had 98% similarity with Bacillus megaterium. 16S rRNA sequence of isolate was deposited in GenBank with accession number JX115009. The average poly P chain length was 10.5 in this bacterium. The antimicrobial activity of bacterial extracted poly P was much better than chemical poly P, and its interaction with gentamicin increased the activity of this drug. The best synergistic activity of this interaction was observed for Corynebacterium glutamicum and Pseudomonas aeruginosa species. The highest adsorption of phosphorus occurred in stationary phase of growth curve, and then the amount of phosphorus increased in medium by degradation of stored poly P. Conclusions: In this study, we isolated a high-level producer bacterium of poly P and extracted poly P by chemical treatment. In addition, we compared antimicrobial activity of chemical poly P with bacterial poly P and its interaction with gentamicin against both Gram-positive and Gram-negative bacteria. Significance and Impact of the Study: Many studies have shown that bacteria are becoming resistant to gentamicin sulphate. In this study, we approved that Acinetobacter baumannii, a pathogenic gentamicin-resistant bacterium, is sensitive to bacterial poly P, and thus, this poly P can be substituted for gentamicin in treatment.
机译:目的:本研究的目的是生产聚磷酸盐(poly P)并研究其抗菌作用。方法与结果:用Albert染色法观察细胞中的Poly P颗粒,并用Mussig-Zufika法提取。薄层色谱和核磁共振波谱( 31 P NMR)被用来表征这些颗粒的性质。磷消耗量和聚磷产量与生长的关系通过钒钼钼比色法确定。从环境样品中分离出的60株细菌中,G11菌株具有形成高水平的聚P的能力。系统进化分析表明,该菌株与巨大芽孢杆菌具有98%的相似性。分离株的16S rRNA序列保藏在GenBank中,登录号为JX115009。该细菌的平均聚P链长度为10.5。细菌提取的聚磷的抗菌活性远远优于化学聚磷,并且它与庆大霉素的相互作用增加了该药物的活性。对于谷氨酸棒杆菌和铜绿假单胞菌物种,观察到了这种相互作用的最佳协同活性。磷的最高吸附发生在生长曲线的固定相,然后由于储存的多聚磷的降解而增加了培养基中磷的含量。结论:本研究分离了高水平的多聚磷生产菌并提取了多聚磷通过化学处理。此外,我们比较了化学聚P和细菌聚P的抗菌活性以及它与庆大霉素对革兰氏阳性和革兰氏阴性细菌的相互作用。研究的意义和影响:许多研究表明细菌对硫酸庆大霉素具有耐药性。在这项研究中,我们批准了鲍曼不动杆菌,一种致病性庆大霉素抗性细菌,对细菌多聚磷敏感,因此该多聚P可以代替庆大霉素进行治疗。

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