某三级医院危重病房细菌生物气溶胶及环境变量评估

IF 2.2 3区 环境科学与生态学 Q2 BIOLOGY
Juliana Juliate Damacena Fernandes, Paula Augusta Dias Fogaça Aguiar, Clesnan Mendes-Rodrigues, Carlos Henrique Gomes Martins
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引用次数: 0

摘要

生物气溶胶成分会危害医院建筑的室内空气质量。生物气溶胶中存在的细菌可能会导致医院相关感染,并增加职业病的数量,伤害医护人员和免疫系统脆弱的患者。本研究旨在评估三级医院生物气溶胶的细菌污染和IQA参数。这项研究在严重急性呼吸系统综合征冠状病毒2型大流行之前和期间,在一所三级大学医院的四个专业重症住院单元(传染病、临床肿瘤、烧伤和整形外科以及肾移植)进行。通过撞击采集空气样本;单级采样器用于定量、分离和鉴定空气中的细菌。在适当的设备上分析每个样品中的环境变量颗粒物浓度、二氧化碳浓度、温度和相对湿度。空气中细菌的浓度在51.22之间 ± 8.89至264.11 ± 161.36 CFU/m3。在样本中鉴定的13个细菌属中,11个具有潜在致病性或机会性。环境变量温度和相对湿度高于指示值。我们得出的结论是,该医院的室内空气质量必须得到改善,在严重急性呼吸系统综合征冠状病毒2型大流行期间建立的新卫生参数对本研究两个阶段确定的菌落形成单位的浓度和细菌种类/菌株的总数产生了积极影响。我们建议分析影响生物气溶胶成分的其他因素,以便能够全面了解生物气溶胶成分。更全面的分析也将使室内空气质量控制能够在这里研究的每个专业重症住院单元以及该医院的其他部门,甚至世界各地的其他医院中采用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing bacterial bioaerosol and environmental variables of critical hospitalization units of a tertiary hospital

Bioaerosol components can endanger the indoor air quality (IAQ) in hospital buildings. The bacteria present in bioaerosols may cause hospital-associated infections and increase the number of occupational diseases, harming healthcare workers and patients with vulnerable immune systems. This study aimed to assess the bacteriological contamination of bioaerosols and the IQA parameters in a tertiary hospital. The study was performed in four specialized critical hospitalization units (Infectious Disease, Clinical Oncology, Burn and Plastic Surgery, and Kidney Transplant) located at a tertiary university hospital before and during the SARS-CoV-2 pandemic. Air samples were collected by impaction; a single-stage sampler was used to quantify, to isolate, and to identify airborne bacteria. The environmental variables particulate matter concentration, carbon dioxide concentration, temperature, and relative humidity were analyzed in each sample, on appropriate equipment. The concentration of airborne bacteria varied from 51.22 ± 8.89 to 264.11 ± 161.36 CFU/m3. Of the thirteen bacterial genera identified in the samples, eleven were potentially pathogenic or opportunistic. The environmental variables temperature and relative humidity were higher than indicated. We concluded that IAQ in this hospital must be improved, and that the new sanitary parameters established during the SARS-CoV-2 pandemic influenced positively the concentration of colony-forming units and the total number of bacterial species/strains identified in the two phases of this research. We recommend analyzing other factors that affect bioaerosol composition, so that a complete view of the bioaerosol components can be achieved. A more comprehensive analysis would also allow IAQ control to be adopted in each specialized critical hospitalization unit studied here as well as in other sectors of this hospital and even in other hospitals worldwide.

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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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