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Evaluation of rayon swab surface sample collection method for Bacillus spores from nonporous surfaces

机译:人造丝拭子表面样品采集方法对无孔表面芽孢杆菌孢子的评价

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To evaluate US Centers for Disease Control and Prevention recommended swab surface sample collection method for recovery efficiency and limit of detection for powdered Bacillus spores from nonporous surfaces. Stainless steel and painted wallboard surface coupons were seeded with dry aerosolized Bacillus atrophaeus spores and surface concentrations determined. The observed mean rayon swab recovery efficiency from stainless steel was 0p"41 with a standard deviation (SD) of pl0p"17 and for painted wallboard was 0p"41 with an SD of pl0p"23. Evaluation of a sonication extraction method for the rayon swabs produced a mean extraction efficiency of 0p"76 with an SD of pl0p"12. Swab recovery quantitative limits of detection were estimated at 25 colony forming units (CFU) per sample area for both stainless steel and painted wallboard. The swab sample collection method may be appropriate for small area sampling (10 -25 cmpo) with a high agent concentration, but has limited value for large surface areas with a low agent concentration. The results of this study provide information necessary for the interpretation of swab environmental sample collection data, that is, positive swab samples are indicative of high surface concentrations and may imply a potential for exposure, whereas negative swab samples do not assure that organisms are absent from the surfaces sampled and may not assure the absence of the potential for exposure. It is critical from a public health perspective that the information obtained is accurate and reproducible. The consequence of an inappropriate public health response founded on information gathered using an ineffective or unreliable sample collection method has the potential for undesired social and economic impact.
机译:为了评估美国疾病控制和预防中心推荐的拭子表面样本收集方法,以提高回收效率和从无孔表面粉末状芽孢杆菌孢子的检出限。用干燥的雾化萎缩芽孢杆菌孢子播种不锈钢和涂漆的墙板表面试样,并测定表面浓度。从不锈钢观察到的平均人造丝拭子回收效率为0p″ 41,标准偏差(SD)为p10p″ 17,而涂漆墙板的为0p″ 41,SD为p10p″ 23。对人造丝拭子的超声提取方法的评估产生了平均提取效率为0p“ 76,SD为p10p” 12。对于不锈钢和带漆墙板,棉签回收定量检测极限估计为每个样品区域25个菌落形成单位(CFU)。药签样本采集方法可能适用于试剂浓度高的小面积采样(10 -25 cmpo),但对于试剂浓度低的大表面积采样值有限。这项研究的结果为解释拭子环境样品收集数据提供了必要的信息,即,阳性拭子样品表明表面浓度高,可能暗示有潜在暴露的可能性,而阴性拭子样品不能确保不存在有机体。采样表面,可能无法确保没有潜在的暴露。从公共卫生的角度来看,获得的信息准确且可重现至关重要。基于使用无效或不可靠的样本收集方法收集到的信息而做出的不适当的公共卫生应对措施可能导致不希望的社会和经济影响。

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