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Identification of bacterial strains by laboratories participating in the Deutsches Krebsforschungszentrum quality assurance programme

机译:参与Deutsches Krebsforschungszentrum质量保证计划的实验室鉴定细菌菌株

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摘要

The quality assurance programme (QAP) of the Deutsches Krebsforschungszentrum (DKFZ) is a proficiency testing system developed to service the laboratory animal discipline. QAP comprises the quarterly distribution of two bacterial strains originating from various species of animals for identification to the species level and antibiotic susceptibility testing. We compared identification results reported by QAP participants over the years 1996-2004 with those obtained by the Dutch Bacterial Diagnostics reference laboratory on 68 samples comprising 71 bacterial strains and a fungus. Significant differences were found in the frequency of reported and correct identifications when bacteria were assigned to different groups based on morphology by Gram stain and on origin (animal versus environmental, rodent and rabbit versus other animal species, pathogen versus non-pathogens). Rodent and rabbit pathogens yielded 73% correct identifications, and with all bacterial strains only 60% of the identifications were correct. We assume that most QAP participants were from laboratory animal diagnostic laboratories. If this is true, the capabilities of laboratories in the laboratory animal discipline to correctly identify bacterial species are well below what are considered acceptable limits for human diagnostic laboratories. The distribution of cultured bacteria circumvents the most difficult step in the microbiological monitoring of animals, namely primary culture from clinical samples. We propose to set up a QAP that comprises the distribution of specimens mimicking clinical samples normally submitted to laboratory animal diagnostic laboratories.
机译:Deutsches Krebsforschungszentrum(DKFZ)的质量保证计划(QAP)是为实验室动物学科提供服务的能力验证系统。 QAP包括每个物种的两种细菌菌株的季度分布,以鉴定物种水平和进行抗生素敏感性测试。我们将1996-2004年QAP参与者报告的鉴定结果与荷兰细菌诊断参考实验室对68种样品(包括71种细菌菌株和真菌)的鉴定结果进行了比较。当根据革兰氏染色的形态和来源(动物与环境,啮齿动物和兔子与其他动物物种,病原体与非病原体)将细菌分为不同组时,报告和正确鉴定的频率存在显着差异。啮齿动物和兔子的病原体可产生73%的正确鉴定,而在所有细菌菌株中,只有60%的鉴定是正确的。我们假设大多数QAP参与者来自实验室动物诊断实验室。如果是这样,那么实验室动物学科的实验室正确识别细菌物种的能力将大大低于人类诊断实验室可接受的极限。培养的细菌的分布规避了动物微生物监测中最困难的步骤,即从临床样品中进行原代培养。我们建议建立一个质量保证计划,其中应包括模拟通常提交给实验室动物诊断实验室的临床样本的标本分布。

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