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首页> 外文期刊>Biotechnology Progress >Comparison of time-gated surface-enhanced raman spectroscopy (TG-SERS) and classical SERS based monitoring of Escherichia coli cultivation samples
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Comparison of time-gated surface-enhanced raman spectroscopy (TG-SERS) and classical SERS based monitoring of Escherichia coli cultivation samples

机译:时间门控表面增强拉曼光谱(TG-SERS)的比较和基于大肠杆菌栽培样品的古典SERS监测

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The application of Raman spectroscopy as a monitoring technique for bioprocesses is severely limited by a large background signal originating from fluorescing compounds in the culture media. Here, we compare time-gated Raman (TG-Raman)-, continuous wave NIR-process Raman (NIR-Raman), and continuous wave micro-Raman (micro-Raman) approaches in combination with surface enhanced Raman spectroscopy (SERS) for their potential to overcome this limit. For that purpose, we monitored metabolite concentrations of Escherichia coli bioreactor cultivations in cell-free supernatant samples. We investigated concentration transients of glucose, acetate, AMP, and cAMP at alternating substrate availability, from deficiency to excess. Raman and SERS signals were compared to off-line metabolite analysis of carbohydrates, carboxylic acids, and nucleotides. Results demonstrate that SERS, in almost all cases, led to a higher number of identifiable signals and better resolved spectra. Spectra derived from the TG-Raman were comparable to those of micro-Raman resulting in well-discernable Raman peaks, which allowed for the identification of a higher number of compounds. In contrast, NIR-Raman provided a superior performance for the quantitative evaluation of analytes, both with and without SERS nanoparticles when using multivariate data analysis. (c) 2018 American Institute of Chemical Engineers
机译:拉曼光谱作为生物过程的监测技术的应用受到培养介质中荧光化合物的大背景信号的严重限制。在此,我们比较时间门控拉曼(TG-拉曼) - ,连续波NIR-过程拉曼(NIR-RAMAN)和连续波微拉曼(微拉曼)与表面增强拉曼光谱(SERS)结合使用他们克服这个限制的潜力。为此目的,我们监测了在无细胞上清液样品中的大肠杆菌生物反应器培养的代谢产物浓度。我们调查了葡萄糖,醋酸盐,放大器和阵营的浓度瞬变,从缺乏缺乏过量。将拉曼和SERS信号与碳水化合物,羧酸和核苷酸的离线代谢分析进行比较。结果证明,在几乎所有情况下,SERS都导致了更高数量的可识别信号和更好的解决光谱。衍生自Tg-拉曼的光谱与微拉曼的光谱相当,得到可辨别良好的拉曼峰,其允许鉴定较多的化合物。相比之下,当使用多变量数据分析时,NIR-RAMAN提供了对分析物的定量评估的优异性能,所述分析物,无论是否有SERS纳米颗粒。 (c)2018美国化学工程研究所

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