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Wavelength-modulated tunable diode-laser absorption spectrometry for real-time monitoring of microbial growth

机译:波长调制的可调谐二极管激光吸收光谱法,用于实时监测微生物的生长

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It is important to monitor and assess the growth of micro-organisms under various conditions. Yet, thus far there has been no technique to do this with the required speed and accuracy. This work demonstrates swift and accurate assessment of the concentration of carbon dioxide that is produced by use of a wavelength-modulated tunable diode-laser based absorption spectroscopy (WM-TDLAS). It is shown by experiments on two types of bacteria, Staphylococcus aureus and Candida albicans, that the technique can produce high signal-to-noise-ratio data from bacteria grown in confined spaces and exposed to limited amounts of nutrients that can be used for extraction of growth parameters by fitting of the Gompertz model. By applying the technique to S. aureus bacteria at various temperatures (in the 25 degrees C to 42 degrees C range), it is specifically shown that both the maximum growth rate and the so-called lag time have a strong temperature dependence (under the specific conditions with a maximum of the former at 37 degrees C) that matches conventional models well for bacterial growth. Hence, it is demonstrated that WM-TDLAS monitoring CO2 is a user-friendly, non-intrusive, and label-free technique that swiftly, and with high signal-to-noise-ratio, can be used for rapid (on the Hz scale) and accurate assessment of bacterial growth. (C) 2016 Optical Society of America
机译:监测和评估各种条件下微生物的生长非常重要。然而,到目前为止,还没有技术能够以所需的速度和精度来做到这一点。这项工作证明了使用基于波长调制的可调谐二极管-激光的吸收光谱法(WM-TDLAS)产生的二氧化碳浓度的快速而准确的评估。通过对两种类型的细菌(金黄色葡萄球菌和白色念珠菌)进行的实验表明,该技术可以从密闭空间中生长并暴露于可用于提取的有限养分的细菌中产生高信噪比数据通过拟合Gompertz模型确定生长参数。通过将该技术应用于各种温度(在25摄氏度至42摄氏度范围内)的金黄色葡萄球菌中,特别表明最大生长速率和所谓的滞后时间都具有很强的温度依赖性(在特定条件,前者的最大值在37摄氏度),与细菌繁殖的传统模型非常吻合。因此,证明了WM-TDLAS监测CO2是一种用户友好,无干扰且无标签的技术,该技术可快速且具有高信噪比,可用于快速测量(以Hz为单位) )并准确评估细菌的生长。 (C)2016美国眼镜学会

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