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Fourier Transform Infrared Spectroscopy Applied to the Study of Unicellular Models

机译:傅里叶变换红外光谱应用于单细胞模型的研究

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Background: Vibrational spectroscopy has shown the capacity to provide rapid, accurateand relevant information on microorganism’s classification and identification. In fact Fourier TransformInfrared Spectroscopy is a sensitive and effective methodology in food analysis, clinical diagnosisand environmental evaluation, with successful identification at genus and species level.Focus: The interest in this technique lies not only in the identification and classification of bacteria,but there is also relevance in using FTIR to follow cellular responses to stress in unicellular models,with particular interest in yeasts and so far results show FTIR is able to evaluate specific cellularchanges related to stress stimulus, mainly in protein region.Prospect: This work gathered information that demonstrates that it is possible to overcome signal overlappingand use Fourier Transform Infrared Spectroscopy and multivariate analysis tools to obtain biochemicalsignatures of microorganisms and corresponding metabolome that can provide inexpensiveand highly specific alternatives to conventional typing methods. Also, it presents a spectrum representativeof a microbial cell and summarizes in a table the spectral assignments of main biological contributors.
机译:背景:振动光谱表明,能够提供快速,精确的有关微生物分类和识别的相关信息。实际上,傅里叶变异素光谱是粮食分析中的敏感有效的方法,临床诊断和环境评估,在Genus和物种的成功鉴定.Focus:这种技术的兴趣不仅在于细菌的鉴定和分类中,但有使用FTIR遵循细胞反应对单细胞模型的胁迫,特别是对酵母的特别感兴趣,因此,FTIR能够评估与应力刺激相关的特定细胞硬化,主要是蛋白质区.Prospect:这项工作收集了表现出的信息可以克服信号重叠和使用傅里叶变换红外光谱和多变量分析工具以获得微生物的生物化学标志和相应的代谢物,其可以提供inexpenCensiveand高度特定的常规类型方法。此外,它提出了一种微生物细胞的频谱代表,并且在表中总结了主要生物贡献者的光谱分配。

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