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首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Raman spectroscopic identification of single bacterial cells at different stages of their lifecycle
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Raman spectroscopic identification of single bacterial cells at different stages of their lifecycle

机译:拉曼在其生命周期不同阶段的单一细菌细胞的光谱鉴定

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Early, rapid, and reliable bacterial identification is of great importance in natural environments and in medical situations. Numerous studies have shown that Raman spectroscopy can be used to differentiate between different bacteria under controlled laboratory conditions. However, individual bacteria within a population exhibit macromolecular and metabolic heterogeneity over their lifetime. Therefore it is important to be able to identify and classify specific bacteria at different time points of the growth cycle. In this study, four species of bacteria were used to explore the capability of confocal Raman spectroscopy as a tool for the identification of (and discrimination between) diverse bacterial species at various growth time points. The results show that bacterial cells from different growth time points (as well as from a random growth phase) can be discriminated among the four species using principal component analysis (PCA). The results also show that bacteria selected from different growth phases can be classified with the help of a prediction model based on principal component and linear discriminant analysis (PC-LDA). These findings demonstrate that Raman spectroscopy with the application of a PC-LDA model rooted in chemotaxonomic analysis has potential for rapid sensing of microbial cells in environmental and clinical studies. (C) 2016 Elsevier B.V. All rights reserved.
机译:早期,快速,可靠的细菌识别在自然环境和医学情况中具有重要意义。许多研究表明,拉曼光谱可用于区分在受控实验室条件下的不同细菌之间。然而,人群中的个体细菌在其寿命上表现出大分子和代谢异质性。因此,重要的是能够在生长周期的不同时间点识别和分类特定细菌。在这项研究中,使用四种细菌来探讨共聚焦拉曼光谱的能力作为在各种生长时间点处鉴定不同细菌物种的(和歧视)的工具。结果表明,使用主要成分分析(PCA),可以在四种物种中区分来自不同生长时间点(以及来自随机生长阶段)的细菌细胞。结果还表明,从基于主成分和线性判别分析(PC-LDA)的预测模型的帮助,可以对不同生长相选择的细菌进行分类。这些研究结果表明,随着趋化性分析的PC-LDA模型的应用,拉曼光谱具有在环境和临床研究中快速感测微生物细胞的潜力。 (c)2016年Elsevier B.v.保留所有权利。

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