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Label-Free SERS Discrimination and In Situ Analysis of Life Cycle in Escherichia coli and Staphylococcus epidermidis

机译:大肠埃希菌和表皮葡萄球菌的无标签SERS鉴别和生命周期原位分析

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摘要

Surface enhanced Raman spectroscopy (SERS) has been proven suitable for identifying and characterizing different bacterial species, and to fully understand the chemically driven metabolic variations that occur during their evolution. In this study, SERS was exploited to identify the cellular composition of Gram-positive and Gram-negative bacteria by using mesoporous silicon-based substrates decorated with silver nanoparticles. The main differences between the investigated bacterial strains reside in the structure of the cell walls and plasmatic membranes, as well as their biofilm matrix, as clearly noticed in the corresponding SERS spectrum. A complete characterization of the spectra was provided in order to understand the contribution of each vibrational signal collected from the bacterial culture at different times, allowing the analysis of the bacterial populations after 12, 24, and 48 h. The results show clear features in terms of vibrational bands in line with the bacterial growth curve, including an increasing intensity of the signals during the first 24 h and their subsequent decrease in the late stationary phase after 48 h of culture. The evolution of the bacterial culture was also confirmed by fluorescence microscope images.
机译:表面增强拉曼光谱(SERS)已被证明适用于鉴定和表征不同细菌种类,并充分理解其进化过程中发生的化学驱动代谢变化。在这项研究中,通过使用装饰有银纳米粒子的介孔硅基基质,利用SERS鉴定革兰氏阳性和革兰氏阴性细菌的细胞组成。在相应的SERS光谱中清楚地注意到,所研究的细菌菌株之间的主要区别在于细胞壁和质膜的结构以及它们的生物膜基质。提供了光谱的完整表征,以便了解在不同时间从细菌培养物中收集到的每个振动信号的贡献,从而可以分析12、24和48小时后的细菌种群。结果显示出与细菌生长曲线一致的振动带特征,包括在开始的24小时内信号强度增加,以及在培养48小时后的静止后期信号强度降低。荧光显微镜图像也证实了细菌培养物的进化。

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