Elemental composition of household dusts extracted in simulated body fluids and their impact on culturable pathogenic bacteria responses

IF 2.2 3区 环境科学与生态学 Q2 BIOLOGY
Asli Baysal, Sevilay Zora, Hasan Saygin
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Abstract

In the last decade, a great deal of research has focused on the determination of potential toxic elements by total concentration and identification the microorganisms in dust. However, determining bio-relevant (e.g., inhalable) forms of elements instead of total contents in acids is necessary for human health. Moreover, examination of the behavior of microorganism under these bio-relevant conditions and revealing the interaction between elements and pathogens is vital and necessary for deeper understanding. However, previous studies have ignored these topics. Therefore, the present study aimed to (i) investigate elements in household dusts extracted in simulated lung fluids, (ii) examine the total concentration of culturable bacteria and their biochemical responses with exposure to bio-fractions of household dusts, and (iii) assess their relations and risks using the model approaches by inhalation. Here, settled dusts were collected in 25 houses, and extracted in four simulated body fluids to determine bio-fractions of elements. Moreover, total count of potentially pathogenic and heterotrophic bacteria, and four clinically important culturable pathogens were incubated in the presence of household-dusts extracted in simulated body fluids. The activity, biofilm, biochemical and oxidative responses of pathogens were measured following household-dust exposures. Afterward, the relationship between elements and pathogen responses were evaluated, and model and derived approaches were used for risk assessments of elements and pathogens. The higher daily intake of elements obtained in artificial lysosomal fluid fraction of household dust mimicking the inflammatory condition compared to other body fluids. Moreover, bacterial responses were mainly influenced from bio-fractions of household dusts and their elemental contents.

Abstract Image

在模拟体液中提取的家用灰尘元素组成及其对可培养致病菌反应的影响
在过去的十年中,大量的研究都集中在通过总浓度确定潜在的有毒元素和识别灰尘中的微生物。然而,为了人类健康,有必要确定元素的生物相关(如可吸入)形式,而不是酸中的总含量。此外,研究微生物在这些生物相关条件下的行为以及揭示元素与病原体之间的相互作用对于加深理解也是至关重要和必要的。然而,以往的研究忽略了这些主题。因此,本研究的目的是:(i) 调查在模拟肺液中提取的家用灰尘中的元素;(ii) 研究可培养细菌的总浓度及其生化反应,以及(iii) 利用吸入模型方法评估它们之间的关系和风险。本研究收集了 25 所房屋中的沉降尘埃,并在四种模拟体液中进行提取,以确定其中的生物组分。此外,还对潜在致病菌和异养菌的总数以及四种临床上重要的可培养病原体在模拟体液中提取的家庭灰尘存在下进行了培养。在接触家用灰尘后,对病原体的活性、生物膜、生化和氧化反应进行了测量。随后,评估了元素与病原体反应之间的关系,并利用模型和衍生方法对元素和病原体进行了风险评估。与其他体液相比,家用灰尘中模拟炎症状态的人工溶酶体液中元素的日摄入量更高。此外,细菌的反应主要受到家用灰尘生物组分及其元素含量的影响。
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来源期刊
Aerobiologia
Aerobiologia 环境科学-环境科学
CiteScore
4.50
自引率
15.00%
发文量
37
审稿时长
18-36 weeks
期刊介绍: Associated with the International Association for Aerobiology, Aerobiologia is an international medium for original research and review articles in the interdisciplinary fields of aerobiology and interaction of human, plant and animal systems on the biosphere. Coverage includes bioaerosols, transport mechanisms, biometeorology, climatology, air-sea interaction, land-surface/atmosphere interaction, biological pollution, biological input to global change, microbiology, aeromycology, aeropalynology, arthropod dispersal and environmental policy. Emphasis is placed on respiratory allergology, plant pathology, pest management, biological weathering and biodeterioration, indoor air quality, air-conditioning technology, industrial aerobiology and more. Aerobiologia serves aerobiologists, and other professionals in medicine, public health, industrial and environmental hygiene, biological sciences, agriculture, atmospheric physics, botany, environmental science and cultural heritage.
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