首页> 外文期刊>Sensors Journal, IEEE >Time-Resolved Studies of Bioluminescence From Photobacterium Leiognathi and Rapid Antimicrobial Susceptibility Testing on E. Coli Using Tunable Diode Laser Spectroscopy
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Time-Resolved Studies of Bioluminescence From Photobacterium Leiognathi and Rapid Antimicrobial Susceptibility Testing on E. Coli Using Tunable Diode Laser Spectroscopy

机译:使用可调谐二极管激光光谱对大肠杆菌的发光杆菌和快速抗微生物敏感性试验的生物发光的时间分辨研究

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We demonstrate that tunable diode laser spectroscopy (TDLS) can be used as a reliable, convenient and versatile investigative technique for non-invasive, high-sensitivity and time-resolved studies of the expression of various traits by bacterial strains. We use a 2004 nm vertical cavity surface emitting laser and a 4320 nm mid-infrared quantum cascade laser to show that the bioluminescence and simultaneous CO2 emission from Photobacterium leiognathi are correlated. The bioluminescence peaks when the growth rate is maximum. This supports the hypothesis that bioluminescence is a cell density-dependent phenomenon. We also show that TDLS can be used for ultra-rapid antimicrobial susceptibility testing without any need of sample preparation. The mole fraction of CO2 emitted during the growth of E. coli was recorded for different standardized doses of ampicillin to show the drastic suppression of growth as the antibiotic dose was increased to the recommended minimum inhibitory drug concentration. Growth suppression was detectable within 2 h, which is much shorter than the time required by conventional methods. We conclude that TDLS is a potent technique for validation and refinement of mathematical models of microbial growth that are necessary to better understand the dynamics of the expression of various traits at specific stages of growth. It is also important for rapid antimicrobial susceptibility testing.
机译:我们证明可调谐二极管激光光谱(TDL)可用作可靠,方便,多功能的调查技术,用于通过细菌菌株的各种性状表达的非侵入性,高灵敏度和时间分辨的研究。我们使用2004 nm垂直腔表面发射激光器和4320 nm中红外量子级联激光器,以表明生物发光和同时的CO 2 发射 Photobacterium Leiognathi 是相关的。当生长速率最大时,生物发光峰值。这支持生物发光是细胞密度依赖性现象的假设。我们还表明,TDL可用于超快速抗微生物易感性测试,而无需任何样品制备。 co的鼹鼠分数 2 在成长期间发出 e。 Coli 被记录出不同标准化剂量的氨苄青霉素,以表明随着抗生素剂量增加到推荐的最低抑制剂药物浓度,抑制生长的激烈抑制。在2小时内可检测生长抑制,这比常规方法所需的时间短得多。我们得出结论,TDL是用于验证和改进的微生物生长的数学模型的有效技术,这是更好地了解在生长的特定阶段的各种性状的表达的动态。对于快速抗微生物易感性测试也很重要。

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