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On-Line Monitoring of Microbial Volatile Metabolites by Proton Transfer Reaction-Mass Spectrometry

机译:质子转移反应-质谱法在线监测微生物挥发性代谢物

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摘要

A method for analysis of volatile organic compounds (VOCs) from microbial cultures was established using proton transfer reaction-mass spectrometry (PTR-MS). A newly developed sampling system was coupled to a PTR-MS instrument to allow on-line monitoring of VOCs in the dynamic headspaces of microbial cultures. The novel PTR-MS method was evaluated for four reference organisms: Escherichia coli, Shigella flexneri, Salmonella enterica, and Candida tropicalis. Headspace VOCs in sampling bottles containing actively growing cultures and uninoculated culture medium controls were sequentially analyzed by PTR-MS. Characteristic marker ions were found for certain microbial cultures: C. tropicalis could be identified by several unique markers compared with the other three organisms, and E. coli and S. enterica were distinguishable from each other and from S. flexneri by specific marker ions, demonstrating the potential of this method to differentiate between even closely related microorganisms. Although the temporal profiles of some VOCs were similar to the growth dynamics of the microbial cultures, most VOCs showed a different temporal profile, characterized by constant or decreasing VOC levels or by single or multiple peaks over 24 h of incubation. These findings strongly indicate that the temporal evolution of VOC emissions during growth must be considered if characterization or differentiation based on microbial VOC emissions is attempted. Our study may help to establish the analysis of VOCs by on-line PTR-MS as a routine method in microbiology and as a tool for monitoring environmental and biotechnological processes.
机译:建立了一种使用质子转移反应质谱(PTR-MS)分析微生物培养物中挥发性有机化合物(VOC)的方法。新开发的采样系统与PTR-MS仪器结合使用,可以在线监测微生物培养物动态顶空中的VOC。对四种参考生物评估了新颖的PTR-MS方法:大肠杆菌,弗氏志贺氏菌,肠沙门氏菌和热带念珠菌。通过PTR-MS依次分析了含有活跃生长的培养物和未接种的培养基对照的采样瓶中的顶空VOC。发现了某些微生物培养物中的特征性标志物离子:与其他三种生物相比,可以通过几种独特的标志物来鉴定热带假丝酵母,并且通过特定的标志物离子可以将大肠杆菌和小肠链球菌区分开来,证明了该方法在甚至密切相关的微生物之间进行区分的潜力。尽管某些挥发性有机化合物的时间分布与微生物培养物的生长动力学相似,但大多数挥发性有机化合物显示出不同的时间分布,其特征是在孵育24小时内恒定或降低的挥发性有机化合物含量或单个或多个峰值。这些发现强烈表明,如果尝试基于微生物VOC排放进行表征或区分,则必须考虑生长过程中VOC排放的时间演变。我们的研究可能有助于通过在线PTR-MS建立VOC的分析,将其作为微生物学中的常规方法以及监测环境和生物技术过程的工具。

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