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Effect of antibiotic-induced morphological changes on surface properties, motility and adhesion of nosocomial Pseudomonas aeruginosa strains under different physiological states

机译:不同生理状态下抗生素诱导的形态变化对铜绿假单胞菌菌株表面特性,运动性和粘附的影响

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摘要

To investigate the influence of antibiotic-induced morphological changes on adhesion and motility abilities and surface properties of nosocomial Pseudomonas aeruginosa under different physiological states. The effects of subinhibitory concentration (sub-MIC) of Piperacillin/Tazobactam (P/T) and Imipenem (IMP) were studied on P. aeruginosa adhesion (1 h) using a modified microtitre-plate assay, on their ability to swim and to twitch, on surface hydrophobicity and on acid-base interactions of P. aeruginosa strains by measuring their ability to adhere to n-hexadecane, chloroform and ethyl acetate, respectively. Our results show that antibiotic-induced morphological changes and bacterial physiological state can affect differently surface properties, motility and adhesion abilities of P. aeruginosa. Under different physiological states P/T induced morphological changes, reduced motility abilities, decreased adhesion to polystyrene and cell surface hydrophobicity (CSH). Moreover, P/T and IMP led to similar changes in exponential population adhesion to chloroform and ethyl acetate. Additionally, IMP induced morphological changes and showed no differences on CSH, adhesion and motility abilities in both growth phases. Adhesion is an attractive target for new antibacterial strategies, namely by using sub-MIC antibiotics that induce morphological, motility and surface properties changes, which are dependent of P. aeruginosa phenotype and physiological state.
机译:目的探讨不同生理状态下抗生素引起的形态变化对铜绿假单胞菌黏附和运动能力及表面特性的影响。使用改良的微量滴定板分析研究了哌拉西林/他唑巴坦(P / T)和亚胺培南(IMP)的亚抑制浓度(sub-MIC)对铜绿假单胞菌黏附(1 h)的游动和抵抗能力的影响。通过测量铜绿假单胞菌菌株分别粘附于正十六烷,氯仿和乙酸乙酯的能力,在表面疏水性和酸碱相互作用上进行抽搐。我们的结果表明,抗生素诱导的形态变化和细菌的生理状态可以不同地影响铜绿假单胞菌的表面性质,运动性和粘附能力。在不同的生理状态下,P / T诱导了形态变化,降低了运动能力,降低了对聚苯乙烯的粘附力并降低了细胞表面疏水性(CSH)。而且,P / T和IMP导致指数种群对氯仿和乙酸乙酯的粘附力发生类似变化。另外,IMP诱导了形态变化,并且在两个生长期的CSH,粘附力和运动能力方面均没有差异。粘附是新的抗菌策略的有吸引力的目标,即通过使用诱导铜绿假单胞菌表型和生理状态依赖的形态,运动性和表面性质变化的亚MIC抗生素。

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