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High-throughput phenotyping of uropathogenic E. coli isolates with Fourier transform infrared spectroscopy

机译:傅里叶变换红外光谱法对尿路致病性大肠杆菌分离株进行高通量表型分析

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摘要

Fourier transform infrared (FT-IR) spectroscopy is an established rapid whole-organism fingerprinting method that generates metabolic fingerprints from bacteria that reflect the phenotype of the microorganism under investigation. However, whilst FT-IR spectroscopy is fast (typically 10 s to 1 min per sample), the approaches for microbial sample preparation can be time consuming as plate culture or shake flasks are used for growth of the organism. We report a new approach that allows micro-cultivation of bacteria from low volumes (typically 200 μL) to be coupled with FT-IR spectroscopy. This approach is fast and easy to perform and gives equivalent data to the lengthier and more expensive shake flask cultivations (sample volume = 20 mL). With this micro-culture approach we also demonstrate high reproducibility of the metabolic fingerprints. The approach allowed separation of different isolates of Escherichia coli involved in urinary tract infection, including members of the globally disseminated ST131 clone, with respect to both genotype and resistance or otherwise to the antibiotic Ciprofloxacin.
机译:傅里叶变换红外(FT-IR)光谱学是一种已建立的快速全生物指纹图谱方法,该方法可从细菌生成代谢指纹,这些细菌反映出所研究微生物的表型。但是,尽管FT-IR光谱分析速度很快(每个样品通常为10 s至1分钟),但是由于使用平板培养或摇瓶培养生物体,微生物样品制备方法可能很耗时。我们报告了一种新方法,该方法允许将小体积(通常为200μL)的细菌进行微培养,并结合FT-IR光谱法。这种方法快速且易于执行,并且可以为更长,更昂贵的摇瓶培养提供等效数据(样品量= 20 mL)。通过这种微培养方法,我们还证明了代谢指纹的高度可重复性。该方法允许分离涉及尿路感染的大肠杆菌的不同分离株,包括在基因型和耐药性方面或在其他方面对环丙沙星抗生素的耐药性,包括全球传播的ST131克隆的成员。

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