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Evaluation of an Automated Rapid Diagnostic Assay for Detection of Gram-Negative Bacteria and Their Drug-Resistance Genes in Positive Blood Cultures

机译:检测阳性血液培养物中革兰氏阴性细菌及其耐药基因的自动化快速诊断检测方法的评估

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摘要

We evaluated the performance of the Verigene Gram-Negative Blood Culture Nucleic Acid Test (BC-GN; Nanosphere, Northbrook, IL, USA), an automated multiplex assay for rapid identification of positive blood cultures caused by 9 Gram-negative bacteria (GNB) and for detection of 9 genes associated with β-lactam resistance. The BC-GN assay can be performed directly from positive blood cultures with 5 minutes of hands-on and 2 hours of run time per sample. A total of 397 GNB positive blood cultures were analyzed using the BC-GN assay. Of the 397 samples, 295 were simulated samples prepared by inoculating GNB into blood culture bottles, and the remaining were clinical samples from 102 patients with positive blood cultures. Aliquots of the positive blood cultures were tested by the BC-GN assay. The results of bacterial identification between the BC-GN assay and standard laboratory methods were as follows: Acinetobacter spp. (39 isolates for the BC-GN assay/39 for the standard methods), Citrobacter spp. (7/7), Escherichia coli (87/87), Klebsiella oxytoca (13/13), and Proteus spp. (11/11); Enterobacter spp. (29/30); Klebsiella pneumoniae (62/72); Pseudomonas aeruginosa (124/125); and Serratia marcescens (18/21); respectively. From the 102 clinical samples, 104 bacterial species were identified with the BC-GN assay, whereas 110 were identified with the standard methods. The BC-GN assay also detected all β-lactam resistance genes tested (233 genes), including 54 bla CTX-M, 119 bla IMP, 8 bla KPC, 16 bla NDM, 24 bla OXA-23, 1 bla OXA-24/40, 1 bla OXA-48, 4 bla OXA-58, and 6 bla VIM. The data shows that the BC-GN assay provides rapid detection of GNB and β-lactam resistance genes in positive blood cultures and has the potential to contributing to optimal patient management by earlier detection of major antimicrobial resistance genes.
机译:我们评估了Verigene革兰氏阴性血培养核酸测试(BC-GN; Nanosphere,诺斯布鲁克,伊利诺伊州,美国)的性能,这是一种自动多重测定法,用于快速鉴定9种革兰氏阴性细菌(GNB)引起的阳性血培养。用于检测9种与β-内酰胺抗性相关的基因。可以直接从阳性血液培养物中进行BC-GN测定,每个样本操作5分钟,运行时间2小时。使用BC-GN分析分析了总共397个GNB阳性血液培养物。在397个样本中,有295个是通过将GNB接种到血液培养瓶中而制备的模拟样本,其余是102个血液培养阳性患者的临床样本。通过BC-GN测定法测试阳性血液培养物的等分试样。在BC-GN分析和标准实验室方法之间进行细菌鉴定的结果如下:不动杆菌属。 (用于BC-GN分析的39个分离物/用于标准方法的39个分离物),柠檬酸杆菌属。 (7/7),大肠杆菌(87/87),产酸克雷伯菌(13/13)和变形杆菌属。 (11/11);肠杆菌属。 (29/30);肺炎克雷伯菌(62/72);铜绿假单胞菌(124/125);和粘质沙雷氏菌(18/21);分别。从102个临床样本中,通过BC-GN分析鉴定出104种细菌,而通过标准方法鉴定出110种。 BC-GN分析还检测了所有测试的β-内酰胺抗性基因(233个基因),包括54 bla CTX-M,119 bla IMP,8 bla KPC,16 bla NDM,24 bla OXA-23、1 bla OXA-24 / 40、1 bla OXA-48、4 bla OXA-58和6 bla VIM。数据表明,BC-GN分析可在阳性血液培养物中快速检测GNB和β-内酰胺抗性基因,并有可能通过早期检测主要的抗微生物抗性基因为患者的最佳治疗做出贡献。

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