UV-light fluorescence as a confirmation method for presumptive Legionella colonies isolated from water samples.

IF 2 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Paul Badoux, Adrie Atsma, Esther van Harmelen-Vrins, Sjoerd Euser
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引用次数: 0

Abstract

Legionnaires' disease (LD) is a severe and potentially fatal form of bacterial pneumonia caused by Legionella spp. We evaluated the use of UV-light for detecting Legionella non-pneumophila in water samples according to the NEN-EN-ISO 11731:2017 methodology (reference method) in a collaborative effort involving 10 laboratories. First, a test panel was constructed of 298 strains: 157 Legionella strains and 141 non-Legionella strains were cultured on buffered charcoal yeast extract (BCYE)-medium and confirmed according to ISO 11731: 2017 (cultured on BCYE agar plates with and without l-cysteine), and by matrix-assisted laser desorption-ionization time of flight or next generation sequencing. All strains were additionally exposed to an UV-light to assess if they showed a bright blue fluorescence effect (UV-positive) or not (UV-negative). Second, in an interlaboratory study, 10 laboratories analyzed a blinded set of 16 Legionella strains and 8 non-Legionella strains using both methods. The test panel analyses showed 100% accordance between the UV-light and reference method. In addition, the interlaboratory study results showed full agreement between both methods. Our results support the implementation of UV-light detection to confirm Legionella presumptive colonies during analyses of water samples according to the NEN-EN-ISO 11731:2017 methodology. Implementation of UV-light confirmation could reduce workload, time-to-result and costs for the analyses of water samples for the presence of Legionella.

用紫外荧光法确认从水样中分离出的推定军团菌菌落。
军团菌病(LD)是由军团菌引起的一种严重的、可能致命的细菌性肺炎。 我们根据 NEN-EN-ISO 11731:2017 方法(参考方法)评估了使用紫外光检测水样中非嗜肺军团菌的效果,共有 10 个实验室参与了这项合作。首先,构建了一个包含 298 株菌株的测试面板:在 BCYE 培养基上培养出 157 株军团菌和 141 株非军团菌菌株,并根据 ISO 11731: 2017(在含或不含 L-半胱氨酸的 BCYE 琼脂平板上培养)以及 MALDI-TOF 或 NGS 进行确认。此外,所有菌株都暴露在紫外线下,以评估它们是否显示出亮蓝色荧光效应(紫外线阳性)(紫外线阴性)。其次,在一项实验室间研究中,10 家实验室使用这两种方法对一组 16 株军团菌和 8 株非军团菌菌株进行了盲法分析。测试小组的分析结果显示,紫外光法与参考方法的一致性达到了 100%。此外,实验室间研究结果显示两种方法完全一致。我们的研究结果支持在根据 NEN-EN-ISO 11731:2017 方法分析水样时采用紫外光检测来确认军团菌推定菌落。采用紫外光确认法可以减少分析水样中是否存在军团菌的工作量、结果产生时间和成本。
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来源期刊
Letters in Applied Microbiology
Letters in Applied Microbiology 工程技术-生物工程与应用微生物
CiteScore
4.40
自引率
4.20%
发文量
225
审稿时长
3.3 months
期刊介绍: Journal of & Letters in Applied Microbiology are two of the flagship research journals of the Society for Applied Microbiology (SfAM). For more than 75 years they have been publishing top quality research and reviews in the broad field of applied microbiology. The journals are provided to all SfAM members as well as having a global online readership totalling more than 500,000 downloads per year in more than 200 countries. Submitting authors can expect fast decision and publication times, averaging 33 days to first decision and 34 days from acceptance to online publication. There are no page charges.
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