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Suspension Bead Array of the Single-Stranded Multiplex Polymerase Chain Reaction Amplicons for Enhanced Identification and Quantification of Multiple Pathogens

机译:悬浮珠阵列的单链多重聚合酶链反应扩增子,用于增强鉴定和定量多种病原体

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Rapid identification of single and multiple infectious agents is vital in clinical settings and during biothreat attack. This study assesses the assay of single-stranded multiplex polymerase chain reaction (PCR) amplicons by suspension bead array (SSMP-SBA) for multiple pathogens identification in a single-tube reaction. A 15-plex assay for identification of 11 highly infectious pathogens was developed to evaluate the performance of SSMP-SBA. Pathogen-specific amplicons were obtained by sequential amplification of genomic DNAs using gene-specific primers tagged with artificial unique sequences and unique primers of which the reverse primer was modified by biotin and phosphorothioate. The SSMP products generated by T7 exonuclease-mediated DNA hydrolysis were hybridized to 15 sets of beads coupled with gene-specific and control oligonucleotide probes for pathogen identification and quantification by flow cytometry. This method was validated via assessment of 57 reference strains and one clinical bacterial isolate. All 11 pathogens can be detected by the 15-plex SSMP-SBA assay, and this design significantly enhanced the signal-to-noise ratio and improved the assay performance. This assay achieves similar sensitivity to our in-house real-time PCR system with the limit of detection equivalent to 5-100 genome copies and a linear dynamic range crossing three to five logs. In the validation assay, a 100% accuracy rate was achieved when the pathogens were among the target species. Notably, the species of pathogens were accurately identified from the samples with multiple infections. SSMP-SBA presents superior performance with multiplexing capability in a single-tube reaction and provides a new approach for detection and species identification of multiple pathogen infections.
机译:在临床环境和生物威胁发作期间,快速识别单一和多种传染原至关重要。这项研究评估通过悬浮珠阵列(SSMP-SBA)的单链多重聚合酶链反应(PCR)扩增子的测定,以在单管反应中鉴定多种病原体。建立了一种用于鉴定11种高传染性病原体的15重检测法,以评估SSMP-SBA的性能。病原体特异性扩增子是通过使用标记有人工独特序列的基因特异性引物和反向引物被生物素和硫代磷酸酯修饰的独特引物依次扩增基因组DNA而获得的。将T7核酸外切酶介导的DNA水解产生的SSMP产物与15组珠子杂交,并与基因特异性和对照寡核苷酸探针偶联,以通过流式细胞术鉴定和定量病原体。通过评估57株参考菌株和一种临床细菌分离株验证了该方法。通过15重SSMP-SBA分析可以检测到所有11种病原体,这种设计显着提高了信噪比并改善了分析性能。该检测方法达到了与我们内部实时PCR系统相似的灵敏度,检测极限相当于5-100个基因组拷贝,线性动态范围跨越了3至5个对数。在验证试验中,当病原体属于目标物种时,准确率达到100%。值得注意的是,从多次感染的样本中可以准确地识别出病原体的种类。 SSMP-SBA在单管反应中具有出色的性能和多路传输能力,并为检测和鉴定多种病原体感染提供了一种新方法。

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