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首页> 外文期刊>Aquatic Toxicology >Environmentally relevant concentrations of pharmaceuticals influence the initial adhesion of bacteria.
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Environmentally relevant concentrations of pharmaceuticals influence the initial adhesion of bacteria.

机译:与环境有关的药物浓度会影响细菌的初始黏附。

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摘要

Pharmaceuticals are abundant at low concentrations (i.e. ngL(-1); mugL(-1)) in natural aquatic systems. However, very little is known about their effects on microorganisms. This study investigated the influence of the pharmaceuticals phenazone, amoxicillin and erythromycin, at low, non-toxic concentrations (i.e. 0.5-50mugL(-1)), on the initial adhesion of bacteria to uncoated and iron-coated polystyrene. The influence of the pharmaceuticals on the initial adhesion of bacterial pure cultures (Escherichia coli, Aquabacterium commune, Bacillus subtilis) isolated from natural aquatic systems, was investigated with a plate assay. Initial adhesion of the pure cultures depended on the selected pharmaceutical, its concentration, the bacterial strain and the adhesion surface. Different combinations of these parameters resulted in inhibition, enhancement or had no effect on initial adhesion. In addition, a continuous flow system was used to investigate the influence of the pharmaceuticals on the initial adhesion of a drinking water microbial community. The drinking water community showed decreased adhesion in the presence of the pharmaceuticals regardless of adhesion surface. The results show that pharmaceuticals at environmentally relevant concentrations can influence the initial adhesion of bacteria. Thus, pharmaceutical compounds that are introduced to natural aquatic systems are able to exert subtle effects on bacteria.
机译:天然水生系统中的低浓度药物(即ngL(-1); mugL(-1))丰富。然而,关于它们对微生物的影响知之甚少。这项研究调查了低浓度,无毒浓度(即0.5-50μgL(-1))的非硝酮,阿莫西林和红霉素对细菌与未涂覆和铁涂覆的聚苯乙烯的初始黏附的影响。用平板测定法研究了药物对从天然水生系统分离的细菌纯培养物(大肠杆菌,水生细菌,枯草芽孢杆菌)的初始黏附的影响。纯培养物的初始粘附取决于所选择的药物,其浓度,细菌菌株和粘附表面。这些参数的不同组合导致抑制,增强或对初始粘附没有影响。另外,使用连续流动系统来研究药物对饮用水微生物群落初始粘附的影响。不管粘附表面如何,在存在药物的情况下,饮用水社区的粘附力均下降。结果表明,与环境有关浓度的药物会影响细菌的初始黏附。因此,引入天然水生系统的药物化合物能够对细菌产生微妙的影响。

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