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首页> 外文期刊>Waste Management >Are workers from waste sorting industry really protected by wearing Filtering Respiratory Protective Devices? The gap between the myth and reality
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Are workers from waste sorting industry really protected by wearing Filtering Respiratory Protective Devices? The gap between the myth and reality

机译:穿戴过滤式呼吸防护设备是否真的可以保护废物分类行业的工人?神话与现实之间的鸿沟

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摘要

One of the solutions for decreasing the workers' exposure to bioburden is the use of Filtering Respiratory Protective Devices (FRPD). As such it is important to determine whether these devices are fulfilling their protective role. This is the basis of the current study, aimed at characterizing bioburden retained by 120 FRPD (both in interior layers and in exhalation valves) through culture based-methods and molecular tools and also via analysis of antifungal resistance and mycotoxins profile. Our results show that Gram - Bacteria are present at a higher prevalence than total bacteria in both matrixes. Regarding fungal identification, Chrysonilia sitophila presented the highest prevalence on interior layers (55.1% on malt extract agar (MEA) supplemented with chloramphenicol (0.05%); 59.6% on dichloran-glycerol agar (DG18)), whereas on exhalation valves Aspergillus sp. presented the highest prevalence on MEA (6.8%) and C. sito-phila on DG18 (36.3%). Among Aspergillus genera, section Fumigati was the one with the highest prevalence in both matrices. Aspergillus sp. was the most prevalent on exhalation valves (75.0% ITRA) in the screening of azole resistance. Fumigati section was the most abundant Aspergillus sp. detected on the interior layers (33.33%, 40 samples out of 120) and on the exhalation valves (1.66%, 2 samples out of 120). The interior layers and exhalation valves from workers with more waste contact showed an increased exposure to bioburden. This study showed that FRPD can have high levels of bioburden, toxigenic fungal strains and Aspergillus sections with reduced susceptibility to the tested azoles and can be used as a passive sampling method since it mimics the results obtained by active methods in previous studies. The gathered information will be useful to prioritize multiple interventions on workers' education or even on FRPD replacement frequency.
机译:减少工人接触生物负荷的解决方案之一是使用过滤式呼吸防护装置(FRPD)。因此,确定这些设备是否正在发挥保护作用非常重要。这是当前研究的基础,旨在通过基于培养的方法和分子工具,以及通过分析抗真菌性和真菌毒素谱,表征120 FRPD所保留的生物负荷(在内层和呼气阀中)。我们的结果表明,两种基质中的革兰氏细菌比总细菌的流行率更高。在真菌鉴定方面,小ry虫在内层的患病率最高(麦芽浸提琼脂(MEA)补充氯霉素(0.05%)占55.1%;二氯甘油琼脂(DG18)占59.6%),而呼气阀上的曲霉属(Aspergillus sp。)在MEA上的患病率最高(6.8%),在DG18上的患儿梭状芽胞杆菌的患病率最高(36.3%)。在曲霉属中,Fugigati切片是在两种基质中患病率最高的一种。曲霉在对吡咯耐药性的筛查中,在呼气阀中最为普遍(75.0%ITRA)。熏蒸切片是最丰富的曲霉。在内层(33.33%,120个样本中的40个样本)和呼气阀(1.66%,120个样本中的2个样本)中检测到。接触更多废物的工人的内层和呼气阀显示出更多的生物负荷。这项研究表明FRPD可以具有高水平的生物负荷,产毒真菌菌株和曲霉菌切片,并且对被测唑的敏感性降低,并且由于它模仿了以前研究中通过主动方法获得的结果,因此可以用作被动采样方法。所收集的信息将有助于对工人教育甚至FRPD更换频率的多种干预措施进行优先排序。

著录项

  • 来源
    《Waste Management》 |2020年第2期|856-867|共12页
  • 作者单位

    H&TRC - Health & Technology Research Center ESTeSL - Escola Superior de Tecnologia da Saude Instituto Politecnico de Lisboa Portugal Centro de Investigacao em Saude Publico Universidade NOVA de Lisboa 1600-560 Lisbon Portugal;

    H&TRC - Health & Technology Research Center ESTeSL - Escola Superior de Tecnologia da Saude Instituto Politecnico de Lisboa Portugal;

    H&TRC - Health & Technology Research Center ESTeSL - Escola Superior de Tecnologia da Saude Instituto Politecnico de Lisboa Portugal Research Institute for Medicines (iMed.ULisboa) Faculty of Pharmacy University of Lisbon Lisbon Portugal;

    H&TRC - Health & Technology Research Center ESTeSL - Escola Superior de Tecnologia da Saude Instituto Politecnico de Lisboa Portugal University of Lisbon Institute of Molecular Medicine Faculty of Medicine Lisbon Portugal;

    Kazimierz Wielki University Faculty of Biological Sciences Department of Physiology and Toxicology Chodkiewicza 30 85-064 Bydgoszcz Poland;

    Institut de recherche Robert-Sauve en sante et securite du travail Montreal Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Filtering Respiratory Protective Devices; Waste sorting industry; Bioburden; Fungal biomass; Fungal toxigenic strains detection;

    机译:过滤呼吸防护装置;废物分类行业;生物负担真菌生物量真菌产毒菌株检测;

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