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首页> 外文期刊>Journal of Clinical Microbiology >Rapid Universal Identification of Bacterial Pathogens from Clinical Cultures by Using a Novel Sloppy Molecular Beacon Melting Temperature Signature Technique
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Rapid Universal Identification of Bacterial Pathogens from Clinical Cultures by Using a Novel Sloppy Molecular Beacon Melting Temperature Signature Technique

机译:通过使用新型S散的分子信标融化温度签名技术从临床文化中快速普遍鉴定细菌病原体。

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A real-time PCR assay with the ability to rapidly identify all pathogenic bacteria would have widespread medical utility. Current real-time PCR technologies cannot accomplish this task due to severe limitations in multiplexing ability. To this end, we developed a new assay system which supports very high degrees of multiplexing. We developed a new class of mismatch-tolerant “sloppy” molecular beacons, modified them to provide an extended hybridization range, and developed a multiprobe, multimelting temperature (Tm) signature approach to bacterial species identification. Sloppy molecular beacons were exceptionally versatile, and they were able to generate specific Tm values for DNA sequences that differed by as little as one nucleotide to as many as 23 polymorphisms. Combining the Tm values generated by several probe-target hybrids resulted in Tm signatures that served as highly accurate sequence identifiers. Using this method, PCR assays with as few as six sloppy molecular beacons targeting bacterial 16S rRNA gene segments could reproducibly classify 119 different sequence types of pathogenic and commensal bacteria, representing 64 genera, into 111 Tm signature types. Blinded studies using the assay to identify the bacteria present in 270 patient-derived clinical cultures including 106 patient blood cultures showed a 95 to 97% concordance with conventional methods. Importantly, no bacteria were misidentified; rather, the few species that could not be identified were classified as “indeterminate,” resulting in an assay specificity of 100%. This approach enables highly multiplexed target detection using a simple PCR format that can transform infectious disease diagnostics and improve patient outcomes.
机译:具有快速识别所有病原细菌能力的实时PCR分析将具有广泛的医学用途。由于多路复用能力的严格限制,当前的实时PCR技术无法完成此任务。为此,我们开发了一种新的测定系统,该系统支持非常高的复用度。我们开发了一类新的耐错配的“马虎”分子信标,对其进行了修饰以提供更大的杂交范围,并开发了多探针,多解链温度( T m )标记细菌种类鉴定的方法。马虎的分子信标具有极强的通用性,它们能够为DNA序列产生特定的 T m 值,这些值相差仅一个核苷酸至多达23个多态性。结合几个探针-目标杂种生成的 T m 值,可以得到 T m 签名,该签名非常准确序列标识符。使用这种方法,利用针对细菌16S rRNA基因片段的少至六个散乱分子信标的PCR分析,可以将代表64个属的119种致病菌和共生细菌的可重复序列分类为111 T m 签名类型。使用该测定法进行盲法研究以鉴定存在于270个患者来源的临床培养物中的细菌,包括106个患者血液培养物中的细菌,与常规方法的一致性为95%至97%。重要的是,没有细菌被误识别。相反,少数无法识别的物种被归类为“不确定”,导致测定特异性为100%。这种方法可以使用简单的PCR格式实现高度复用的靶标检测,该PCR格式可以改变传染性疾病诊断并改善患者预后。

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