首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Use of a Sampling Area-Adjusted Adenosine Triphosphate Bioluminescence Assay Based on Digital Image Quantification to Assess the Cleanliness of Hospital Surfaces
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Use of a Sampling Area-Adjusted Adenosine Triphosphate Bioluminescence Assay Based on Digital Image Quantification to Assess the Cleanliness of Hospital Surfaces

机译:基于数字图像量化的采样区域调整后的三磷酸腺苷生物发光测定方法用于评估医院表面的清洁度

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摘要

Contaminated surfaces play an important role in the transmission of pathogens. We sought to establish a criterion that could indicate “cleanliness” using a sampling area–adjusted adenosine triphosphate (ATP) assay. In the first phase of the study, target surfaces were selected for swab sampling before and after daily cleaning; then, an aerobic colony count (ACC) plate assay of bacteria and antibiotic-resistant bacteria was conducted. ATP swabs were also tested, and the ATP readings were reported as relative light units (RLUs). The results of the ACC and ATP assays were adjusted according to the sampling area. During the second phase of the study, a new cleaning process employing sodium dichloroisocyanurate (NaDCC) was implemented for comparison. Using the criterion of 2.5 colony-forming units (CFU)/cm2, 45% of the sampled sites were successfully cleaned during phase one of the study. During phase two, the pass rates of the surface samples (64%) were significantly improved, except under stringent (5 RLU/cm2) and lax (500 RLU) ATP criteria. Using receiver-operating characteristic curve analysis, the best cut-off point for an area-adjusted ATP level was 7.34 RLU/cm2, which corresponded to culture-assay levels of <2.5 CFU/cm2. An area adjustment of the ATP assay improved the degree of correlation with the ACC-assay results from weak to moderate.
机译:受污染的表面在病原体的传播中起着重要作用。我们试图建立一个标准,该标准可以通过使用采样区域调整后的三磷酸腺苷(ATP)分析来指示“清洁度”。在研究的第一阶段,在日常清洁前后选择目标表面进行拭子采样。然后,对细菌和抗药性细菌进行好氧菌落计数(ACC)平板测定。还测试了ATP拭子,并将ATP读数报告为相对光单位(RLU)。根据采样区域调整ACC和ATP分析的结果。在研究的第二阶段,实施了一种使用二氯异氰尿酸钠(NaDCC)的新清洁工艺进行比较。使用2.5个菌落形成单位(CFU)/ cm 2 的标准,在研究的第一阶段中成功清洁了45%的采样点。在第二阶段,除了严格(5 RLU / cm 2 )和宽松(500 RLU)ATP标准外,表面样品的通过率(64%)得到了显着提高。使用接收器操作特征曲线分析,区域调整后的ATP水平的最佳分界点为7.34 RLU / cm 2 ,对应于<2.5 CFU / cm 2 。 ATP分析的面积调整从弱到中等改善了与ACC分析结果的相关程度。

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