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本文引用的文献

1
Bioaerosol Sampling: Classical Approaches, Advances, and Perspectives.生物气溶胶采样:经典方法、进展与展望
Aerosol Sci Technol. 2020;54(5):496-519. doi: 10.1080/02786826.2019.1671950. Epub 2019 Oct 4.
2
Indoor hospital air and the impact of ventilation on bioaerosols: a systematic review.室内医院空气与通风对生物气溶胶的影响:系统评价。
J Hosp Infect. 2019 Oct;103(2):175-184. doi: 10.1016/j.jhin.2019.06.016. Epub 2019 Jul 4.
3
Bioaerosols and Transmission, a Diverse and Growing Community of Practice.生物气溶胶与传播,一个多样化且不断发展的实践领域。
Front Public Health. 2019 Feb 21;7:23. doi: 10.3389/fpubh.2019.00023. eCollection 2019.
4
Recovery of Fungal Cells from Air Samples: a Tale of Loss and Gain.从空气样本中回收真菌细胞:得失的故事。
Appl Environ Microbiol. 2019 Apr 18;85(9). doi: 10.1128/AEM.02941-18. Print 2019 May 1.
5
Preventing legionellosis outbreaks by a quick detection of airborne Legionella pneumophila.通过快速检测空气中的嗜肺军团菌来预防军团病疫情。
Environ Res. 2019 Apr;171:546-549. doi: 10.1016/j.envres.2019.01.032. Epub 2019 Jan 15.
6
High fidelity recovery of airborne microbial genetic materials by direct condensation capture into genomic preservatives.直接冷凝捕获法将空气中的微生物遗传物质高保真回收至基因组保存剂中。
J Microbiol Methods. 2019 Feb;157:1-3. doi: 10.1016/j.mimet.2018.12.010. Epub 2018 Dec 14.
7
Sources and mechanisms of bioaerosol generation in occupational environments.职业环境中生物气溶胶的产生源和产生机制。
Crit Rev Microbiol. 2018 Nov;44(6):739-758. doi: 10.1080/1040841X.2018.1508125. Epub 2018 Oct 14.
8
Bioaerosol Sampler Choice Should Consider Efficiency and Ability of Samplers To Cover Microbial Diversity.生物气溶胶采样器的选择应考虑采样器的效率和覆盖微生物多样性的能力。
Appl Environ Microbiol. 2018 Nov 15;84(23). doi: 10.1128/AEM.01589-18. Print 2018 Dec 1.
9
Newly designed 16S rRNA metabarcoding primers amplify diverse and novel archaeal taxa from the environment.新设计的 16S rRNA 代谢组学引物可从环境中扩增出多样且新颖的古菌分类群。
Environ Microbiol Rep. 2019 Aug;11(4):487-494. doi: 10.1111/1758-2229.12684. Epub 2018 Sep 12.
10
Is there an association between airborne and surface microbes in the critical care environment?重症监护环境中空气传播和表面微生物之间是否存在关联?
J Hosp Infect. 2018 Nov;100(3):e123-e129. doi: 10.1016/j.jhin.2018.04.003. Epub 2018 Apr 9.

室内生物气溶胶的现场采样。

Field sampling of indoor bioaerosols.

作者信息

Cox Jennie, Mbareche Hamza, Lindsley William G, Duchaine Caroline

机构信息

Department of Environmental Health, University of Cincinnati, Cincinnati, Ohio, USA.

Department of Biochemistry, Microbiology, and Bioinformatics, Université Laval, Québec, Canada.

出版信息

Aerosol Sci Technol. 2020;54(5):572-584. doi: 10.1080/02786826.2019.1688759. Epub 2019 Nov 21.

DOI:10.1080/02786826.2019.1688759
PMID:31777412
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6880939/
Abstract

Because bioaerosols are related to adverse health effects in exposed humans and indoor environments represent a unique framework of exposure, concerns about indoor bioaerosols have risen over recent years. One of the major issues in indoor bioaerosol research is the lack of standardization in the methodology, from air sampling strategies and sample treatment to the analytical methods applied. The main characteristics to consider in the choice of indoor sampling methods for bioaerosols are the sampler performance, the representativeness of the sampling, and the concordance with the analytical methods to be used. The selection of bioaerosol collection methods is directly dependent on the analytical methods, which are chosen to answer specific questions raised while designing a study for exposure assessment. In this review, the authors present current practices in the analytical methods and the sampling strategies, with specificity for each type of microbe (fungi, bacteria, archaea and viruses). In addition, common problems and errors to be avoided are discussed. Based on this work, recommendations are made for future efforts towards the development of viable bioaerosol samplers, standards for bioaerosol exposure limits, and making association studies to optimize the use of the big data provided by high-throughput sequencing methods.

摘要

由于生物气溶胶与暴露人群的健康不良影响相关,且室内环境是一个独特的暴露框架,近年来人们对室内生物气溶胶的关注度不断提高。室内生物气溶胶研究的主要问题之一是方法缺乏标准化,从空气采样策略、样品处理到所应用的分析方法均是如此。选择室内生物气溶胶采样方法时要考虑的主要特性是采样器性能、采样的代表性以及与所用分析方法的一致性。生物气溶胶收集方法的选择直接取决于分析方法,而分析方法的选择是为了回答在设计暴露评估研究时提出的特定问题。在本综述中,作者介绍了分析方法和采样策略的当前实践,并针对每种微生物(真菌、细菌、古菌和病毒)进行了详细阐述。此外,还讨论了常见问题及应避免的错误。基于这项工作,对未来开发可行的生物气溶胶采样器、生物气溶胶暴露限值标准以及进行关联研究以优化高通量测序方法提供的大数据的使用等方面提出了建议。