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Microfluidic Cultivation and Laser Tweezers Raman Spectroscopy of E. coli under Antibiotic Stress

机译:抗生素胁迫下大肠杆菌的微流控培养和激光镊拉曼光谱

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摘要

Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms governing the cellular physiology. Due to the variability of physiological and metabolic states, it is important to be able to perform such studies on individual cells. Therefore, we developed an optofluidic system in which we precisely manipulated and monitored individual cells of Escherichia coli. We tested optical micromanipulation in a microfluidic chamber chip by transferring individual bacteria into the chambers. We then subjected the cells in the chambers to antibiotic cefotaxime and we observed the changes by using time-lapse microscopy. Separately, we used laser tweezers Raman spectroscopy (LTRS) in a different micro-chamber chip to manipulate and analyze individual cefotaxime-treated E. coli cells. Additionally, we performed conventional Raman micro-spectroscopic measurements of E. coli cells in a micro-chamber. We found observable changes in the cellular morphology (cell elongation) and in Raman spectra, which were consistent with other recently published observations. The principal component analysis (PCA) of Raman data distinguished between the cefotaxime treated cells and control. We tested the capabilities of the optofluidic system and found it to be a reliable and versatile solution for this class of microbiological experiments.
机译:分析各种体液中的细胞可以极大地加深对控制细胞生理机制的理解。由于生理和代谢状态的可变性,重要的是能够对单个细胞进行此类研究。因此,我们开发了一种光流体系统,可在其中精确地操纵和监测大肠杆菌的单个细胞。我们通过将单个细菌转移到腔室中,在微流腔室芯片中测试了光学显微操作。然后,我们将小室中的细胞接受抗生素头孢噻肟的治疗,并通过延时显微镜观察了变化。另外,我们在不同的微腔芯片中使用了激光镊子拉曼光谱(LTRS)来处理和分析单独的头孢噻肟处理过的大肠杆菌细胞。此外,我们在微腔室中对大肠杆菌细胞进行了常规拉曼显微光谱测量。我们发现细胞形态(细胞伸长)和拉曼光谱中可观察到的变化与其他最近发表的观察结果一致。拉曼数据的主成分分析(PCA)区分了头孢噻肟处理的细胞和对照。我们测试了光流系统的功能,发现它是此类微生物实验的可靠且通用的解决方案。

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