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Evaluation of the Biological Sampling Kit (BiSKit) for Large-Area Surface Sampling

机译:大面积表面采样生物采样套件(BiSKit)的评估

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摘要

Current surface sampling methods for microbial contaminants are designed to sample small areas and utilize culture analysis. The total number of microbes recovered is low because a small area is sampled, making detection of a potential pathogen more difficult. Furthermore, sampling of small areas requires a greater number of samples to be collected, which delays the reporting of results, taxes laboratory resources and staffing, and increases analysis costs. A new biological surface sampling method, the Biological Sampling Kit (BiSKit), designed to sample large areas and to be compatible with testing with a variety of technologies, including PCR and immunoassay, was evaluated and compared to other surface sampling strategies. In experimental room trials, wood laminate and metal surfaces were contaminated by aerosolization of Bacillus atrophaeus spores, a simulant for Bacillus anthracis, into the room, followed by settling of the spores onto the test surfaces. The surfaces were sampled with the BiSKit, a cotton-based swab, and a foam-based swab. Samples were analyzed by culturing, quantitative PCR, and immunological assays. The results showed that the large surface area (1 m2) sampled with the BiSKit resulted in concentrations of B. atrophaeus in samples that were up to 10-fold higher than the concentrations obtained with the other methods tested. A comparison of wet and dry sampling with the BiSKit indicated that dry sampling was more efficient (efficiency, 18.4%) than wet sampling (efficiency, 11.3%). The sensitivities of detection of B. atrophaeus on metal surfaces were 42 ± 5.8 CFU/m2 for wet sampling and 100.5 ± 10.2 CFU/m2 for dry sampling. These results demonstrate that the use of a sampling device capable of sampling larger areas results in higher sensitivity than that obtained with currently available methods and has the advantage of sampling larger areas, thus requiring collection of fewer samples per site.
机译:当前针对微生物污染物的表面采样方法旨在对小面积采样并利用培养分析。回收的微生物总数很低,因为仅对一个小区域进行了采样,这使得对潜在病原体的检测更加困难。此外,小区域的采样需要收集更多的样本,这会延迟结果报告,增加实验室资源和人员配置的负担,并增加分析成本。评估了一种新的生物表面采样方法,即生物采样套件(BiSKit),该方法旨在对大面积采样并与包括PCR和免疫测定在内的多种技术的测试兼容,并与其他表面采样策略进行了比较。在试验室试验中,木材积层板和金属表面被炭疽芽孢杆菌孢子(炭疽芽孢杆菌的模拟物)雾化到室内,然后将孢子沉淀到测试表面上而被污染。使用BiSKit,棉签和泡沫签对表面进行采样。通过培养,定量PCR和免疫测定分析样品。结果表明,使用BiSKit采样的大表面积(1 m 2 )导致样品中萎缩芽孢杆菌的浓度比其他测试方法所获得的浓度高10倍。 。将BiSKit进行干湿采样的比较表明,干采样比湿采样(效率11.3%)更有效(效率18.4%)。金属表面上的萎缩芽孢杆菌检出的灵敏度对于湿采样为42±5.8 CFU / m 2 ,对于干采样为100.5±10.2 CFU / m 2 。这些结果表明,与目前可用的方法相比,使用能够对较大区域进行采样的采样设备具有更高的灵敏度,并且具有对较大区域进行采样的优点,因此需要在每个站点收集较少的样本。

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