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Phenotypic Profiling of Antibiotic Response Signatures in Escherichia coli Using Raman Spectroscopy

机译:利用拉曼光谱法对大肠杆菌中的抗生素反应特征进行表型分析

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摘要

Identifying the mechanism of action of new potential antibiotics is a necessary but time-consuming and costly process. Phenotypic profiling has been utilized effectively to facilitate the discovery of the mechanism of action and molecular targets of uncharacterized drugs. In this research, Raman spectroscopy was used to profile the phenotypic response of Escherichia coli to applied antibiotics. The use of Raman spectroscopy is advantageous because it is noninvasive, label free, and prone to automation, and its results can be obtained in real time. In this research, E. coli cultures were subjected to three times the MICs of 15 different antibiotics (representing five functional antibiotic classes) with known mechanisms of action for 30 min before being analyzed by Raman spectroscopy (using a 532-nm excitation wavelength). The resulting Raman spectra contained sufficient biochemical information to distinguish between profiles induced by individual antibiotics belonging to the same class. The collected spectral data were used to build a discriminant analysis model that identified the effects of unknown antibiotic compounds on the phenotype of E. coli cultures. Chemometric analysis showed the ability of Raman spectroscopy to predict the functional class of an unknown antibiotic and to identify individual antibiotics that elicit similar phenotypic responses. Results of this research demonstrate the power of Raman spectroscopy as a cellular phenotypic profiling methodology and its potential impact on antibiotic drug development research.
机译:确定新的潜在抗生素的作用机理是必要但耗时且昂贵的过程。表型分析已被有效利用,以促进发现未表征药物的作用机理和分子靶标。在这项研究中,拉曼光谱法用于分析大肠杆菌对应用抗生素的表型反应。拉曼光谱法的使用是有利的,因为它是非侵入性的,无标记的并且易于自动化,并且其结果可以实时获得。在这项研究中,对大肠杆菌培养物的15分钟内具有已知作用机理的15种不同抗生素(代表五种功能性抗生素)的MIC值进行了三倍的测定,然后用拉曼光谱法(使用532 nm激发波长)进行了分析。所得的拉曼光谱包含足够的生化信息,以区分由属于同一类别的单个抗生素诱导的概况。收集到的光谱数据用于建立判别分析模型,该模型可以识别未知抗生素化合物对大肠杆菌培养物表型的影响。化学计量分析表明拉曼光谱能够预测未知抗生素的功能类别并鉴定引发相似表型反应的单个抗生素。这项研究的结果证明了拉曼光谱作为一种细胞表型分析方法的力量,及其对抗生素药物开发研究的潜在影响。

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