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Aspergillus spp. burden on filtering respiratory protective devices. Is there an occupational health concern?

机译:aspergillus spp。 过滤呼吸保护装置的负担。 有职业健康问题吗?

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There is scientific evidence that associates occupational exposure to fungi in the waste industry to health outcomes, being Aspergillus genera reported as the most prevalent. During Filtering Respiratory Protective Devices (FFR) use, humidity and temperature conditions provide favorable conditions for Aspergillus growth. The aim of this study was to characterize Aspergillus burden retained by FFR interior layer and exhalation valve. The sample consisted of 120 FFR and the correspondent interior layer and exhalation valves collected from different workstations from one waste sorting industry. The fungal content of exhalation valve and from the interior layer of the each FFR was extracted and inoculated on malt extract agar (MEA) supplemented with chloramphenicol (0.05%) and dichloran-glycerol agar (DG18). FFR extracts were also used for the molecular detection of Aspergillus sections Flavi and Fumigati. Valves presented Aspergillus spp. as the most prevalent genera on MEA media (44.4%), unlike what was observed in the FFR interior layer, where Aspergillus spp. was not the most prevalent genera (6.84% MEA; 5.2% DG18). Among the Aspergillus genera, section Fumigati was the one with highest prevalence, both in exhalation valves (76.57% MEA; 87.24% DG18) and interior layer (75.81% MEA; 51.22% DG18). qPCR analysis successfully amplified DNA from the Aspergillus sections Flavi and Fumigati. Interior layers presented statistically significant differences showing higher number of FFR contaminated with higher levels of Aspergillus in the workstations where workers contact directly with waste. This work, revealing strong fungal contamination of FFR used by workers at waste industry, clearly indicates that future trials to test FFR protective efficacy and establishment of times for FFR replacement should be performed.
机译:有科学证据证明职业暴露在废物行业的真菌对健康结果,作为最普遍的曲霉属。在过滤呼吸保护装置(FFR)期间,湿度和温度条件为曲霉生长提供有利条件。本研究的目的是表征由FFR内层和呼气阀保留的曲霉负担。该样品由120FFR和与一个废物分拣行业的不同工作站收集的内部层和呼气阀组成。提取呼出阀的真菌含量和每个FFR的内层,并接种在补充有氯霉素(0.05%)和二氯甘油琼脂(DG18)的麦芽提取物琼脂(MEA)上。 FFR萃取物也用于曲霉和Fumigati的分子检测。阀门呈现曲霉菌SPP。作为MEA介质中最普遍的Genera(44.4%),与在FFR内层中观察到的内容,其中Aspergillus SPP。不是最常见的属(6.84%的MEA; 5.2%DG18)。在Aspergillus Genera中,Fumigati部分是呼气阀(76.57%MEA; 87.24%DG18)和内层(​​MEA; 51.22%DG18)中具有最高流行率的曲线率。 QPCR分析成功扩增了曲霉和Fumigati的DNA。内部层显示出统计学上显着的差异,显示出在工人直接与废物直接接触的工作站中污染的含有更高水平的FFR污染的污染。这项工作揭示了废物行业工作者使用的FFR的强烈真菌污染,清楚地表明,应进行未来的试验,以测试FFR保护效果和建立FFR更换的次数。

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