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Nanopore single-molecule dielectrophoretic detection of cancer-derived MicroRNA biomarkers

机译:纳米孔单分子介电泳法检测癌症来源的MicroRNA生物标志物

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The nanopore-based single-molecule biosensor has been extensively investigated for various biomedical detections. It has demonstrated the potential in gene sequencing and diagnosis-oriented biomarker detection such as microRNAs. In real-time detection, however, samples extracted from bio-fluids contain various non-target nucleic acids components. These components can cause severely influence the target detection accuracy. We have discovered that a polycationic probe can solve this issue. The polycationic peptide domain of the probe can separate the target probe complex from free nucleic acids, and only lead the complex into the pore, therefore realizing simultaneous enrichment and detection of target microRNAs. This study establishs a universal approach to detecting any short pathogenic nucleic acids fragment in complex samples
机译:基于纳米孔的单分子生物传感器已被广泛研究用于各种生物医学检测。它已经证明了在基因测序和面向诊断的生物标志物检测(例如microRNA)中的潜力。但是,在实时检测中,从生物流体中提取的样品包含各种非目标核酸成分。这些成分会严重影响目标检测精度。我们发现聚阳离子探针可以解决此问题。探针的聚阳离子肽结构域可以将靶探针复合物与游离核酸分开,并且仅将复合物引入孔中,因此实现了目标微RNA的同时富集和检测。这项研究建立了一种检测复杂样品中任何短致病性核酸片段的通用方法

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