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评估BioFire FilmArray肺炎检测板升级版在确定医院获得性肺炎微生物病因方面相对于传统诊断方法的性能。

Evaluation of the BioFire FilmArray Pneumonia Panel Plus to the Conventional Diagnostic Methods in Determining the Microbiological Etiology of Hospital-Acquired Pneumonia.

作者信息

Kamel Noha A, Alshahrani Mohammad Y, Aboshanab Khaled M, El Borhamy Mervat I

机构信息

Department of Microbiology, Faculty of Pharmacy, Misr International University (MIU), Cairo P.O. Box 19648, Egypt.

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Khalid University, P.O. Box 61413, Abha 9088, Saudi Arabia.

出版信息

Biology (Basel). 2022 Feb 27;11(3):377. doi: 10.3390/biology11030377.

Abstract

Hospital-acquired pneumonia (HAP) is a substantial public health issue that is associated with high mortality rates and is complicated by an arsenal of microbial etiologies, expressing multidrug-resistant phenotypes, rendering relatively limited therapeutic options. BioFire FilmArray Pneumonia Panel plus (BFPP) is a simple multiplexed PCR system that integrates sample preparation, nucleic acid extraction, amplification, and analysis of microbial etiology, with a turnaround time of about one hour. In comparison to standard culture methods, BFPP is simpler, easier to perform, and can simultaneously detect the most common pathogens involved in lower respiratory tract infections (34 targets). Accordingly, we evaluated the diagnostic performance of the multiplexed BFPP for the rapid detection of 27 clinically relevant respiratory pathogens and 7 genetic markers among 50 HAP cases admitted to the intensive care unit (ICU), who submitted mini-bronchoalveolar (mBAL) specimens. In comparison to standard culture methods, BFPP showed an overall sensitivity of 100% [95% CI; 90-100] and overall specificity of 90% [95% CI; 87.4-92.5] among all the tested bacterial targets. BFPP identified 11 viral targets (22%) among the tested specimens. The BFPP semi-quantitative analysis showed a concordance rate of 47.4% among positive culture specimens. For the investigation of the antibiotic resistance genes, BFPP showed a positive percent agreement (PPA), a negative percent agreement (NPA), and an overall percent agreement (OPA), reaching 97% [95% CI; 90-100], 95% [95% CI; 91.5-97], and 95% [95% CI; 93-97], respectively, with standard antibiotic sensitivity testing. In conclusion, BFPP has the potential to enhance the rapid microbiological diagnosis of HAP cases, and could aid in tailoring appropriate antibiotic therapies.

摘要

医院获得性肺炎(HAP)是一个重大的公共卫生问题,与高死亡率相关,且因多种微生物病因并发,这些微生物表现出多重耐药表型,使得治疗选择相对有限。BioFire FilmArray肺炎检测板升级版(BFPP)是一种简单的多重PCR系统,它整合了样本制备、核酸提取、扩增以及微生物病因分析,周转时间约为一小时。与标准培养方法相比,BFPP更简单、易于操作,并且能够同时检测下呼吸道感染中最常见的病原体(34个靶点)。因此,我们评估了多重BFPP在快速检测50例入住重症监护病房(ICU)并提交了微型支气管肺泡(mBAL)标本的HAP病例中27种临床相关呼吸道病原体和7种基因标志物方面的诊断性能。与标准培养方法相比,BFPP在所有测试的细菌靶点中总体灵敏度为100% [95%置信区间;90 - 100],总体特异性为90% [95%置信区间;87.4 - 92.5]。BFPP在测试标本中鉴定出11种病毒靶点(22%)。BFPP的半定量分析显示阳性培养标本的一致率为47.4%。对于抗生素耐药基因的检测,BFPP的阳性百分一致性(PPA)、阴性百分一致性(NPA)和总体百分一致性(OPA)分别达到97% [95%置信区间;90 - 100]、95% [95%置信区间;91.5 - 97]和95% [95%置信区间;93 - 97],与标准抗生素敏感性测试结果一致。总之,BFPP有潜力提高HAP病例的快速微生物诊断水平,并有助于制定合适的抗生素治疗方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0581/8945136/103a17a3cb1c/biology-11-00377-g001.jpg

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