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首页> 外文期刊>In vivo. >Identification of efflux pump-mediated multidrug-resistant bacteria by the ethidium bromide-agar cartwheel method.
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Identification of efflux pump-mediated multidrug-resistant bacteria by the ethidium bromide-agar cartwheel method.

机译:通过溴化乙锭-琼脂车轮法鉴定外排泵介导的耐多药细菌。

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摘要

BACKGROUND/AIM: Bacterial multidrug resistance may be mediated by the overexpression of efflux pumps. Conventional evaluation of efflux activity using efflux pump substrates, such as ethidium bromide, requires specialised instrumentation. The agar-based method, previously reported, has been modified to evaluate as many as twelve bacterial strains and has been termed the ethidium bromide-agar cartwheel method. MATERIALS AND METHODS: Agar plates containing different concentrations of ethidium bromide were swabbed with bacterial cultures. The cell efflux capacity increased with increasing ethidium bromide concentration, which produced fluorescence of the bacterial mass. RESULTS: The method was shown to be useful for the detection of efflux activity among multidrug-resistant Gram-negative and Gram-positive clinical isolates, as confirmed by the determination of minimum inhibitory concentration for several antibiotics in the presence of known efflux pump inhibitors. CONCLUSION: This method may be adapted to the clinical laboratory for the presumptive identification of multidrug-resistant isolates that overexpress efflux pump systems.
机译:背景/目的:细菌多药耐药性可能由外排泵的过表达介导。使用外排泵基质(如溴化乙锭)的常规外排活性评估需要专门的仪器。先前报道的基于琼脂的方法已被修改以评估多达十二种细菌菌株,并被称为溴化乙锭-琼脂车轮法。材料与方法:用细菌培养物擦拭含有不同浓度溴化乙锭的琼脂平板。细胞外排能力随溴化乙锭浓度的增加而增加,从而产生细菌团的荧光。结果表明,该方法可用于检测多重耐药的革兰氏阴性和革兰氏阳性临床分离株的外排活性,这一点已通过在已知外排泵抑制剂存在下确定几种抗生素的最低抑菌浓度来证实。结论:该方法可能适用于临床实验室,以推测出过量表达外排泵系统的耐多药分离株。

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