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Performance of probe polymerization-conjunction-agarose gel electrophoresis in the rapid detection of KRAS gene mutation

机译:探针聚合-琼脂糖凝胶电泳在快速检测KRAS基因突变中的性能

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摘要

This study aimed to develop a simple and rapid method to detect KRAS gene mutations for conventional clinical applications under laboratory conditions. The genotype of mutation sites was determined based on the occurrence of target bands in the corresponding lanes of the reaction tubes through polymerization-conjunction of the probes, probe purification and amplification, and agarose gel electrophoresis. Circulating DNA samples were obtained from the plasma of 72 patients with lung cancer, which were identified based on six mutation sites (G12S, G12R, G12C, G12D, G12A, and G12V) of codon 12 of the KRAS gene. The detection results were compared with direct sequencing data. The proposed detection method is characterized by simple operation, high specificity, and high sensitivity (2%). This method can detect the mutations of three samples at G12S, G12R, and G12A. In the direct sequencing spectra of these samples, the genotype could not be determined due to the lack of evident sequencing peaks that correspond to the basic group of mutations. In conclusion, a simple and rapid method was established based on probe polymerization-conjunction-agarose gel electrophoresis for detecting KRAS gene mutations. This method can be applied to the conventional mutation detection of inhomogeneous samples.
机译:这项研究旨在开发一种简单快速的方法,以在实验室条件下检测常规临床应用中的KRAS基因突变。通过探针的聚合连接,探针的纯化和扩增以及琼脂糖凝胶电泳,根据反应管相应泳道中目标条带的出现,确定突变位点的基因型。从72名肺癌患者的血浆中获取循环DNA样本,这些样本是根据KRAS基因第12位密码子的六个突变位点(G12S,G12R,G12C,G12D,G12A和G12V)鉴定的。将检测结果与直接测序数据进行比较。所提出的检测方法具有操作简单,特异性高,灵敏度高(2%)的特点。此方法可以检测G12S,G12R和G12A上三个样品的突变。在这些样品的直接测序光谱中,由于缺乏对应于基本突变组的明显测序峰,因此无法确定基因型。综上所述,建立了一种基于探针聚合-连接-琼脂糖凝胶电泳的快速简便的检测KRAS基因突变的方法。该方法可以应用于不均匀样品的常规突变检测。

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