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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Real-Time Monitoring of Bacteria Clearance From Blood in a Murine Model
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Real-Time Monitoring of Bacteria Clearance From Blood in a Murine Model

机译:鼠模型中血液中细菌清除的实时监测

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Bloodstream infections, especially those that are antibiotic resistant, pose a significant challenge to health care leading to increased hospitalization time and patient mortality. There are different facets to this problem that make these diseases difficult to treat, such as the difficulty to detect bacteria in the blood and the poorly understood mechanism of bacterial invasion into and out of the circulatory system. However, little progress has been made in developing techniques to study bacteria dynamics in the bloodstream. Here, we present a new approach using an in vivo flow cytometry platform for real-time, noninvasive, label-free, and quantitative monitoring of the lifespan of green fluorescent protein-expressing Staphylococcus aureus and Pseudomonas aeruginosa in a murine model. We report a relatively fast average rate of clearance for S. aureus (k = 0.37 +/- 0.09 min(-1), half-life similar to 1.9 min) and a slower rate for P. aeruginosa (k = 0.07 +/- 0.02 min(-1), half-life similar to 9.6 min). We also observed what appears to be two stages of clearance for S. aureus, while P. aeruginosa appeared only to have a single stage of clearance. Our results demonstrate that an advanced research tool can be used for studying the dynamics of bacteria cells directly in the bloodstream, providing insight into the progression of infectious diseases in circulation. (c) 2019 International Society for Advancement of Cytometry
机译:血流感染,尤其是那些是抗生素的抗性,对医疗保健构成重大挑战,导致住院时间和患者死亡率增加。对于这个问题有不同的方面使这些疾病难以治疗,例如难以检测血液中的细菌和细菌侵袭的良好机制进出循环系统。然而,在血液中研究细菌动态的技术方面取得了很小的进展。在这里,我们介绍了一种使用体内流式细胞术平台的新方法,用于实时,非侵入性,无标记,以及在鼠模型中表达绿色荧光蛋白的葡萄球菌和假单胞菌铜绿假单胞菌的寿命的定量监测。我们报告了AUREUS的相对较快的平均间隙率(K = 0.37 +/- 0.09分钟(-1),类似于1.9分钟的半衰期)和P. Aeruginosa的速度较慢(k = 0.07 +/- 0.02分钟(-1),半衰期类似于9.6分钟)。我们还观察到似乎是金黄色葡萄球菌的两个阶段,而P.铜绿假单胞似乎只出现了单一的间隙。我们的结果表明,先进的研究工具可用于在血液中直接研究细菌细胞的动态,从而深入了解循环中传染病的进展。 (c)2019年国际促进细胞计量协会

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