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Volatile compound profiling for the identification of Gram-negative bacteria by ion-molecule reaction-mass spectrometry.

机译:挥发性化合物谱分析,用于通过离子分子反应质谱法鉴定革兰氏阴性细菌。

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Aims: Fast and reliable methods for the early detection and identi?cation of micro-organism are of high interest. In addition to established methods, direct mass spectrometry–based analysis of volatile compounds (VCs) emitted by micro-organisms has recently been shown to allow species differentiation. Thus, a large number of pathogenic Gram-negative bacteria, which comprised Acinetobacter baumannii, Enterobacter cloacae, Escherichia coli, Klebsiella oxytoca, Pseudomonas aeruginosa, Proteus vulgaris and Serratia marcescens, were subjected to headspace VC composition analysis using direct mass spectrometry in a low sample volume that allows for automation. Methods and Results: Ion-molecule reaction–mass spectrometry (IMR-MS) was applied to headspace analysis of the above bacterial samples incubated at 37°C starting with 10 2 CFU ml 1 . Measurements of sample VC composition were performed at 4, 8 and 24 h. Microbial growth was detected in all samples after 8 h. After 24 h, species-speci?c mass spectra were obtained allowing differentiation between bacterial species. Conclusions: IMR-MS provided rapid growth detection and identi?cation of micro-organisms using a cumulative end-point model with a short analysis time of 3 min per sample. Signi?cance and impact of the study: Following further validation, the presented method of bacterial sample headspace VC analysis has the potential to be used for bacteria differentiation.
机译:目的:快速,可靠的微生物早期检测和鉴定方法备受关注。除了已建立的方法外,最近还显示了基于质谱的直接分析方法,可以分析微生物散发的挥发性化合物(VC),从而可以区分物种。因此,对包括鲍曼不动杆菌,阴沟肠杆菌,大肠杆菌,产氧克雷伯菌,铜绿假单胞菌,寻常型变形杆菌和粘质沙雷氏菌在内的大量致病性革兰氏阴性细菌在低样品中使用直接质谱法进行了顶空VC成分分析。允许自动化的数量。方法和结果:离子分子反应质谱法(IMR-MS)用于上述细菌样品的顶空分析,该样品在37°C时从10 2 CFU ml 1开始孵育。在4、8和24小时进行样品VC成分的测量。 8小时后,所有样品中均检测到微生物生长。 24小时后,获得特定物种的质谱图,从而可以区分细菌物种。结论:IMR-MS使用累积终点模型提供了快速的生长检测和微生物鉴定,每个样品的分析时间短至3分钟。研究的意义和影响:经过进一步验证,所提出的细菌样品顶空VC分析方法有可能用于细菌分化。

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