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Detection and Classification of Live and Dead Escherichia coli by Laser-Induced Breakdown Spectroscopy

机译:激光诱导击穿光谱法检测活生死大肠杆菌

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摘要

A common goal for astrobiology is to detect organic materials that may indicate the presence of life. However, organic materials alone may not be representative of currently living systems. Thus, it would be valuable to have a method with which to determine the health of living materials. Here, we present progress toward this goal by reporting on the application of laser-induced breakdown spectroscopy (LIBS) to study characteristics of live and dead cells using Escherichia coli (E. coli) strain K12 cells as a model organism since its growth and death in the laboratory are well understood. Our goal is to determine whether LIBS, in its femto- and/or nanosecond forms, could ascertain the state of a living organism. E. coli strain K12 cells were grown, collected, and exposed to one of two types of inactivation treatments: autoclaving and sonication. Cells were also kept alive as a control. We found that LIBS yields key information that allows for the discrimination of live and dead E. coli bacteria based on ionic shifts reflective of cell membrane integrity. Key Words: E. coli—Trace elements—Live and dead cells—Laser-induced breakdown spectroscopy—Atomic force microscopy. Astrobiology 15, 144–153.
机译:占星生物学的一个共同目标是检测可能指示生命存在的有机物质。然而,仅有机材料可能不能代表当前的生活系统。因此,具有一种确定生命物质健康的方法将是有价值的。在这里,我们通过报告激光诱导击穿光谱法(LIBS)来研究活的和死细胞的特性,以此为目标实现了这一进展,该特性使用了大肠杆菌(E. coli)K12细胞作为模型生物,因为其生长和死亡在实验室里是众所周知的。我们的目标是确定飞秒和/或纳秒形式的LIBS是否可以确定生物体的状态。使大肠杆菌菌株K12细胞生长,收集并暴露于两种灭活处理中的一种:高压灭菌和超声处理。细胞也保持存活作为对照。我们发现LIBS产生了关键信息,该信息可根据反映细胞膜完整性的离子位移来区分活的和死的大肠杆菌。关键词:大肠杆菌-痕量元素-活细胞和死细胞-激光诱导击穿光谱法-原子力显微镜。天体生物学15,144–153。

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