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Evaluation of the diagnostic value of fluorescent in situ hybridization in a rat model of bacterial pneumonia

机译:荧光原位杂交在细菌性肺炎大鼠模型中的诊断价值

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In severe nosocomial pneumonia, the pathogenic responsibility of bacteria isolated from airways is far from certain, and a lung biopsy is sometimes performed. However, detection and identification of pathogens are frequently unachieved. Here, we developed a protocol for direct visualization of bacteria within the lung tissue using fluorescent in situ hybridization (FISH) in a rat model of Acinetobacter baumannii pneumonia. The reference positive diagnosis of bacterial pneumonia was the presence of pathological signs of pneumonia associated with the proof of bacteria or bacterial PCR products into the parenchyma. By analysis of 122 sets of slices from 26 rats and using the eubacterial probe EUB-338, our results show that FISH reached a sensitivity and a diagnostic accuracy higher than that of optic microscopy (sensitivity: 96% versus 55.4% and diagnostic accuracy: 96.7% versus 66.4%), whereas both approaches had 100% specificity. FISH could be useful especially on negative biopsies from patients with suspected infectious pneumonia.
机译:在严重的医院内肺炎中,从气道分离出的细菌的致病作用还不确定,有时需要进行肺活检。但是,常常无法实现病原体的检测和鉴定。在这里,我们开发了一种协议,用于在鲍曼不动杆菌肺炎大鼠模型中使用荧光原位杂交(FISH)直接可视化肺组织内细菌。细菌性肺炎的参考阳性诊断是肺炎的病理征象与细菌或进入实质的细菌PCR产物的证据有关。通过分析26只大鼠的122组切片并使用真细菌探针EUB-338,我们的结果表明,FISH的灵敏度和诊断准确性高于光学显微镜(灵敏度:96%比55.4%,诊断准确性:96.7) %和66.4%),而两种方法的特异性均为100%。 FISH尤其适用于疑似感染性肺炎患者的活检阴性。

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