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用于吸入研究的室内真菌气溶胶的生成与特性分析

Generation and Characterization of Indoor Fungal Aerosols for Inhalation Studies.

作者信息

Madsen Anne Mette, Larsen Søren T, Koponen Ismo K, Kling Kirsten I, Barooni Afnan, Karottki Dorina Gabriela, Tendal Kira, Wolkoff Peder

机构信息

The National Research Centre for the Working Environment, Copenhagen, Denmark

The National Research Centre for the Working Environment, Copenhagen, Denmark.

出版信息

Appl Environ Microbiol. 2016 Apr 4;82(8):2479-93. doi: 10.1128/AEM.04063-15. Print 2016 Apr.

Abstract

In the indoor environment, people are exposed to several fungal species. Evident dampness is associated with increased respiratory symptoms. To examine the immune responses associated with fungal exposure, mice are often exposed to a single species grown on an agar medium. The aim of this study was to develop an inhalation exposure system to be able to examine responses in mice exposed to mixed fungal species aerosolized from fungus-infested building materials. Indoor airborne fungi were sampled and cultivated on gypsum boards. Aerosols were characterized and compared with aerosols in homes. Aerosols containing 10(7)CFU of fungi/m(3)air were generated repeatedly from fungus-infested gypsum boards in a mouse exposure chamber. Aerosols contained Aspergillus nidulans,Aspergillus niger, Aspergillus ustus, Aspergillus versicolor,Chaetomium globosum,Cladosporium herbarum,Penicillium brevicompactum,Penicillium camemberti,Penicillium chrysogenum,Penicillium commune,Penicillium glabrum,Penicillium olsonii,Penicillium rugulosum,Stachybotrys chartarum, and Wallemia sebi They were all among the most abundant airborne species identified in 28 homes. Nine species from gypsum boards and 11 species in the homes are associated with water damage. Most fungi were present as single spores, but chains and clusters of different species and fragments were also present. The variation in exposure level during the 60 min of aerosol generation was similar to the variation measured in homes. Through aerosolization of fungi from the indoor environment, cultured on gypsum boards, it was possible to generate realistic aerosols in terms of species composition, concentration, and particle sizes. The inhalation-exposure system can be used to study responses to indoor fungi associated with water damage and the importance of fungal species composition.

摘要

在室内环境中,人们会接触到多种真菌。明显的潮湿与呼吸道症状增加有关。为了研究与接触真菌相关的免疫反应,小鼠常被暴露于在琼脂培养基上生长的单一真菌物种。本研究的目的是开发一种吸入暴露系统,以便能够检测暴露于由受真菌侵染的建筑材料雾化产生的混合真菌物种的小鼠的反应。对室内空气传播的真菌进行采样并在石膏板上培养。对气溶胶进行了表征并与家庭中的气溶胶进行了比较。在小鼠暴露室中,从受真菌侵染的石膏板中反复产生每立方米空气中含有10(7)CFU真菌的气溶胶。气溶胶中含有构巢曲霉、黑曲霉、ustus曲霉、杂色曲霉、球毛壳菌、草本枝孢菌、短密青霉、卡门青霉、产黄青霉、普通青霉、光滑青霉、olsonii青霉、皱折青霉、链格孢菌和西氏瓦勒霉。它们都是在28个家庭中鉴定出的最丰富的空气传播物种。来自石膏板的9种真菌和家庭中的11种真菌与水损害有关。大多数真菌以单个孢子的形式存在,但也存在不同物种的链和簇以及碎片。在60分钟的气溶胶生成过程中,暴露水平的变化与在家庭中测量的变化相似。通过将在石膏板上培养的来自室内环境的真菌雾化,就物种组成、浓度和粒径而言,可以产生逼真的气溶胶。该吸入暴露系统可用于研究对与水损害相关的室内真菌的反应以及真菌物种组成的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b469/4959492/b97559ea2ff3/zam9991170650001.jpg

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