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室内空气中可培养的、存活的和总嗜肺军团菌的定量方法。

Methodologies for quantifying culturable, viable, and total Legionella pneumophila in indoor air.

机构信息

Institute of Environmental Health, College of Public Health, National Taiwan University, Taipei, Republic of China.

出版信息

Indoor Air. 2011 Aug;21(4):291-9. doi: 10.1111/j.1600-0668.2010.00701.x. Epub 2010 Dec 28.

Abstract

UNLABELLED

Legionella pneumophila, aerosolized from numerous indoor facilities (e.g., shower heads, hot tubs, spas), may cause Pontiac fever (PF) and lethal pneumonia named Legionnaires' disease (LD) in humans. Reliable methods on quantitative exposure assessment of this bioaerosol are essential for the prevention of PF and LD. Coupled with culture, ethidium monoazide with qPCR, and qPCR assays, the collection efficiency for culturable, viable, and total L. pneumophila was assessed by means of filtration sampling (IOM with gelatin filter and cassette with polycarbonate filter) and liquid-based sampling methods (BioSampler, AGI-30, MAS-100 sampler with Tween mixture and deionized water (DW)). Results show IOM/gelatin filter was comparable to cassette/polycarbonate filter (P = 0.33) and performed greater than all of tested liquid-based methods for total cell collection. On the other hand, IOM/gelatin filter obtained greater efficiencies than cassette/polycarbonate filter by a factor of 3.8-8.6 for viable cells (P = 0.0006) and two orders of magnitude for culturable cells (P = 0.00002). Further comparison between liquid impingement and filtration methods indicates the sampling by IOM/gelatin filter, AGI-30, and BioSampler with DW were the most appropriate for viable cells, while culturable cells were collected most efficiently by BioSampler/DW with periodical replenishment during the sampling.

PRACTICAL IMPLICATIONS

This study recommends the most suitable methodologies for quantifying culturable, viable, and total Legionella pneumophila in indoor air. By using appropriate sampling and analytical methods, the residents and building owners are able to obtain the reliable data and further characterize the exposure risk and/or intervention efficacy against L. pneumophila. Moreover, the adoption of suitable monitoring methods also assists the investigators to explore the sources linked to PF and LD during the outbreaks. Considering reliable microbial monitoring is fundamental for epidemiological survey and risk assessment, the present information should be taken into account in assessing L. pneumophila indoors.

摘要

未加标签

嗜肺军团菌从众多室内设施(如淋浴喷头、热水浴缸、温泉)中雾化,可能导致庞蒂亚克热(PF)和致命性肺炎军团病(LD)。定量评估这种生物气溶胶暴露的可靠方法对于预防 PF 和 LD 至关重要。通过与培养相结合,使用 ethidium monoazide 与 qPCR 以及 qPCR 检测,利用过滤采样(IOM 用明胶过滤器和盒式过滤器用聚碳酸酯过滤器)和基于液体的采样方法(BioSampler、AGI-30、MAS-100 采样器,用吐温混合物和去离子水(DW))评估可培养、有活力和总嗜肺军团菌的收集效率。结果表明,IOM/明胶过滤器与盒式/聚碳酸酯过滤器相当(P = 0.33),并且总细胞收集的效果大于所有测试的基于液体的方法。另一方面,IOM/明胶过滤器对有活力细胞的收集效率比盒式/聚碳酸酯过滤器高 3.8-8.6 倍(P = 0.0006),对可培养细胞的收集效率高两个数量级(P = 0.00002)。液体撞击与过滤方法的进一步比较表明,IOM/明胶过滤器、AGI-30 和用 DW 的 BioSampler 采样方法最适合于有活力的细胞,而用 DW 周期性补充的 BioSampler 最有效地收集可培养的细胞。

实际意义

本研究推荐了定量室内空气中可培养、有活力和总嗜肺军团菌的最适宜方法。通过使用适当的采样和分析方法,居民和建筑物所有者能够获得可靠的数据,并进一步描述暴露风险和/或针对嗜肺军团菌的干预效果。此外,采用合适的监测方法也有助于调查人员在爆发期间探索与 PF 和 LD 相关的来源。考虑到可靠的微生物监测对于流行病学调查和风险评估至关重要,在评估室内嗜肺军团菌时应考虑到本研究的信息。

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