Vandamm J P, Rajanna C, Sharp N J, Molineux I J, Schofield D A
Guild BioSciences, Charleston, South Carolina, USA.
Department of Molecular Genetics and Microbiology, University of Florida, Gainesville, Florida, USA.
J Clin Microbiol. 2014 Aug;52(8):2998-3003. doi: 10.1128/JCM.00316-14. Epub 2014 Jun 11.
Yersinia pestis is a tier 1 agent due to its contagious pneumopathogenicity, extremely rapid progression, and high mortality rate. As the disease is usually fatal without appropriate therapy, rapid detection from clinical matrices is critical to patient outcomes. We previously engineered the diagnostic phage ΦA1122 with luxAB to create a "light-tagged" reporter phage. ΦA1122::luxAB rapidly detects Y. pestis in pure culture and human serum by transducing a bioluminescent signal response. In this report, we assessed the analytical specificity of the reporter phage and investigated diagnostic utility (detection and antibiotic susceptibility analysis) directly from spiked whole blood. The bioreporter displayed 100% (n = 59) inclusivity for Y. pestis and consistent intraspecific signal transduction levels. False positives were not obtained from species typically associated with bacteremia or those relevant to plague diagnosis. However, some non-pestis Yersinia strains and Enterobacteriaceae did elicit signals, albeit at highly attenuated transduction levels. Diagnostic performance was assayed in simple broth-enriched blood samples and standard aerobic culture bottles. In blood, <10(2) CFU/ml was detected within 5 h. In addition, Y. pestis was identified directly from positive blood cultures within 20 to 45 min without further processing. Importantly, coincubation of blood samples with antibiotics facilitated simultaneous antimicrobial susceptibility profiling. Consequently, the reporter phage demonstrated rapid detection and antibiotic susceptibility profiling directly from clinical samples, features that may improve patient prognosis during plague outbreaks.
由于具有传染性肺致病性、极其快速的病程进展和高死亡率,鼠疫耶尔森菌属于一级病原体。由于该疾病在没有适当治疗的情况下通常是致命的,因此从临床样本中快速检测对于患者的预后至关重要。我们之前利用luxAB对诊断噬菌体ΦA1122进行了改造,以创建一种“光标记”报告噬菌体。ΦA1122::luxAB通过转导生物发光信号反应,可在纯培养物和人血清中快速检测鼠疫耶尔森菌。在本报告中,我们评估了报告噬菌体的分析特异性,并直接从加标的全血中研究了其诊断效用(检测和抗生素敏感性分析)。该生物报告器对鼠疫耶尔森菌的包容性为100%(n = 59),且种内信号转导水平一致。未从通常与菌血症相关的物种或与鼠疫诊断相关的物种中获得假阳性结果。然而,一些非鼠疫耶尔森菌菌株和肠杆菌科细菌确实引发了信号,尽管转导水平高度衰减。在简单的富含肉汤的血液样本和标准需氧培养瓶中测定了诊断性能。在血液中,5小时内可检测到<10(2) CFU/ml。此外,无需进一步处理,在20至45分钟内可直接从阳性血培养物中鉴定出鼠疫耶尔森菌。重要的是,血液样本与抗生素的共同孵育有助于同时进行抗菌药物敏感性分析。因此,报告噬菌体直接从临床样本中展示了快速检测和抗生素敏感性分析,这些特性可能会改善鼠疫爆发期间患者的预后。