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Activity and interactions of antibiotic and phytochemical combinations against Pseudomonas aeruginosa in vitro.

机译:抗生素和植物化学组合物对铜绿假单胞菌的体外活性和相互作用。

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In this study the in vitro activities of seven antibiotics (ciprofloxacin, ceftazidime, tetracycline, trimethoprim, sulfamethoxazole, polymyxin B and piperacillin) and six phytochemicals (protocatechuic acid, gallic acid, ellagic acid, rutin, berberine and myricetin) against five P. aeruginosa isolates, alone and in combination are evaluated. All the phytochemicals under investigation demonstrate potential inhibitory activity against P. aeruginosa. The combinations of sulfamethoxazole plus protocatechuic acid, sulfamethoxazole plus ellagic acid, sulfamethoxazole plus gallic acid and tetracycline plus gallic acid show synergistic mode of interaction. However, the combinations of sulfamethoxazole plus myricetin shows synergism for three strains (PA01, DB5218 and DR3062). The synergistic combinations are further evaluated for their bactericidal activity against P. aeruginosa ATCC strain using time-kill method. Sub-inhibitory dose responses of antibiotics and phytochemicals individually and in combination are presented along with their interaction network to suggest on the mechanism of action and potential targets for the phytochemicals under investigation. The identified synergistic combinations can be of potent therapeutic value against P. aeruginosa infections. These findings have potential implications in delaying the development of resistance as the antibacterial effect is achieved with lower concentrations of both drugs (antibiotics and phytochemicals).
机译:在这项研究中,七种抗生素(环丙沙星,头孢他啶,四环素,甲氧苄啶,磺胺甲恶唑,多粘菌素B和哌拉西林)和六种植物化学成分(原儿茶酸,没食子酸,鞣花酸,芦丁,小ber碱和杨梅素)的体外活性。对单独和组合的分离物进行评估。所有正在研究的植物化学物质均显示出对铜绿假单胞菌的潜在抑制活性。磺胺甲基异恶唑加原儿茶酸,磺胺甲基异恶唑加鞣花酸,磺胺甲基异恶唑加没食子酸和四环素加没食子酸的组合显示出相互作用的协同模式。但是,磺胺甲基异恶唑和杨梅素的组合对三种菌株(PA01,DB5218和DR3062)显示协同作用。使用时间杀灭方法进一步评估了协同组合对铜绿假单胞菌ATCC菌株的杀菌活性。单独和组合使用抗生素和植物化学物质的亚抑制剂量反应以及它们的相互作用网络,以提出有关所研究植物化学物质的作用机理和潜在靶标。所鉴定的协同组合可以对铜绿假单胞菌感染具有有效的治疗价值。这些发现对延迟耐药性的发展具有潜在的影响,因为通过降低两种药物(抗生素和植物化学物质)的浓度即可达到抗菌效果。

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