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首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >Point-of-care detection of 16S rRNA of Staphylococcus aureus based on multiple biotin-labeled DNA probes
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Point-of-care detection of 16S rRNA of Staphylococcus aureus based on multiple biotin-labeled DNA probes

机译:基于多种生物素标记的DNA探针的葡萄球菌16S rRNA的护理点检测

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摘要

A visual method that combines multiple biotin-labeled DNA probes and lateral-flow nucleic acid biosensor was developed to detect Staphylococcus aureus. The 16S rRNA from Staphyloccocus aureus (S. aureus), coupled with multiple biotin-labeled DNA probes, was functionalized in a signal structure for lateral-flow point-of-care detection. The secondary structure of the 16S rRNA was unwound by two specific capture probes modified by Fam and multiple bridge probes, which extended additional sequences for use as initiators. By utilizing the initiators, each target 16S rRNA with multiple DNA probes could tether a number of biotin molecules, so that a large number of streptavidin-labeled gold nanoparticles could be introduced in the lateral flow assay. The images of the lateral flow detection results obtained using a smartphone were transmitted to a computer via Wi-Fi or Bluetooth connection for quantitative processing by ImageJ. The limit of detection was 10(3) cfu/mL without sample enrichment, and decreased to 0.12 cfu/mL following a 3-h enrichment of samples in growth medium. Notably, this method presented high specificity and applicability for the detection of S. aureus in food samples. In short, the developed visual non-specific operation method is very suitable for point-of-care diagnosis of pathogens in resource-limited countries.
机译:开发了一种结合多种生物素标记的DNA探针和横向流动核酸生物传感器的可视化方法以检测金黄色葡萄球菌。来自葡萄球菌的16S rRNA与多种生物素标记的DNA探针偶联,在信号结构中官能化,用于横向流动的护理点检测。 16S rRNA的二次结构由FAM和多桥探针修饰的两种特异性捕获探针展开,其扩展了额外的序列作为引发剂。通过利用引发剂,具有多个DNA探针的每个靶16S rRNA可以系在许多生物素分子中,从而可以在横向流动测定中引入大量的链霉抗生物素蛋白标记的金纳米颗粒。使用智能手机获得的横向流动检测结果的图像通过Wi-Fi或蓝牙连接发送到计算机,用于通过imagej定量处理。检测极限为10(3)个CFU / mL,无需样品富集,并在生长培养基中的3-H富集样品后降至0.12 cfu / ml。值得注意的是,该方法呈现出高特异性和适用性用于检测食品样品中的金黄色葡萄球菌。简而言之,开发的视觉非特异性操作方法非常适合资源有限国家的病原体的护理点诊断。

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