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采用改良评估方法的基于等温微量量热法的嗜肺军团菌快速培养检测。

Rapid culture-based detection of Legionella pneumophila using isothermal microcalorimetry with an improved evaluation method.

机构信息

Department of Environmental Microbiology, Helmholtz-Centre for Environmental Research - UFZ, Leipzig, Germany.

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.

出版信息

Microb Biotechnol. 2020 Jul;13(4):1262-1272. doi: 10.1111/1751-7915.13563. Epub 2020 Mar 25.

Abstract

The detection and quantification of Legionella pneumophila (responsible for legionnaire's disease) in water samples can be achieved by various methods. However, the culture-based ISO 11731:2017, which is based on counts of colony-forming units per ml (CFU·ml ) is still the gold standard for quantification of Legionella species (spp.). As a powerful alternative, we propose real-time monitoring of the growth of L. pneumophila using an isothermal microcalorimeter (IMC). Our results demonstrate that, depending on the initial concentration of L. pneumophila, detection times of 24-48 h can be reliably achieved. IMC may, therefore, be used as an early warning system for L. pneumophila contamination. By replacing only visual detection of growth by a thermal sensor, but otherwise maintaining the standardized protocol of the ISO 11731:2017, the new procedure could easily be incorporated into existing standards. The exact determination of the beginning of metabolic heat is often very difficult because at the beginning of the calorimetric signal the thermal stabilization and the metabolic heat development overlap. Here, we propose a new data evaluation based on the first derivation of the heat flow signal. The improved evaluation method can further reduce detection times and significantly increase the reliability of the IMC approach.

摘要

可以通过多种方法检测和定量水中的嗜肺军团菌(引起军团病)。然而,基于培养物的 ISO 11731:2017 仍然是定量军团菌物种(spp.)的金标准,该标准基于每毫升菌落形成单位数 (CFU·ml)。作为一种强大的替代方法,我们建议使用等温微量量热计 (IMC) 实时监测嗜肺军团菌的生长。我们的结果表明,根据嗜肺军团菌的初始浓度,可以可靠地实现 24-48 小时的检测时间。因此,IMC 可以用作嗜肺军团菌污染的预警系统。通过用热传感器代替仅对生长进行目视检测,但同时保留 ISO 11731:2017 的标准化方案,新程序可以轻松纳入现有标准。由于在量热信号的开始时,热稳定和代谢热的发展重叠,因此准确确定代谢热的开始通常非常困难。在这里,我们提出了一种基于热流信号一阶导数的新数据评估方法。改进的评估方法可以进一步缩短检测时间,并显著提高 IMC 方法的可靠性。

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