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Combinatorial Probes for High-Throughput Electrochemical Analysis of Circulating Nucleic Acids in Clinical Samples

机译:临床样品中循环核酸高通量电化学分析的组合探针

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摘要

The analysis of circulating tumour nucleic acids (ctNAs) provides a minimally invasive way to assess the mutational spectrum of a tumour. However, effective and practical methods for analyzing this emerging class of markers are lacking. Analysis of ctNAs using a sensor-based approach has notable challenges, as it is vital to differentiate nucleic acids from normal cells from mutation-bearing sequences emerging from tumours. Moreover, many genes related to cancer have dozens of different mutations. Herein, we report an electrochemical approach that directly detects genes with mutations in patient serum by using combinatorial probes (CPs). The CPs enable detection of all of the mutant alleles derived from the same part of the gene. As a proof of concept, we analyze mutations of the EGFR gene, which has more than 40 clinically relevant alterations that include deletions, insertions, and point mutations. Our CP-based approach accurately detects mutant sequences directly in patient serum.
机译:循环肿瘤核酸(CTNA)的分析提供了一种微创方式来评估肿瘤的突变谱。 然而,缺乏分析这种新出现的标记的有效和实用方法。 使用基于传感器的方法分析CTNA具有显着的挑战,因为它至关重要地将核酸与来自肿瘤出现的突变轴承序列的突变序列分化。 此外,与癌症有关的许多基因具有数十种不同的突变。 在此,我们通过使用组合探针(CPS)报告了一种电化学方法,其直接检测患者血清中的突变的基因。 CPS能够检测从基因的同一部分衍生的所有突变等位基因的检测。 作为概念证明,我们分析EGFR基因的突变,其具有超过40个临床相关的改变,包括缺失,插入和点突变。 我们基于CP的方法可准确地检测患者血清中的突变体序列。

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