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A fast, sensitive and accurate high resolution melting (HRM) technology-based assay to screen for common K-ras mutations.

机译:一种基于快速,灵敏和准确的高分辨率熔解(HRM)技术的检测方法,可筛选常见的K-ras突变。

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BACKGROUND: Increasing evidence points to a negative correlation between K-ras mutations and patient's response to, or survival benefit after, treatment with EGFR-inhibitors. Therefore, rapid and reliable assays for mutational analysis of the K-ras gene are strongly needed. METHODS: We designed a high resolution melting (HRM) technology-based approach followed by direct sequencing to determine K-ras exon 1 (codons 12/13) tumour genotype. RESULTS: Reconstruction experiments demonstrated an analytical sensitivity of the K-ras exon 1 HRM assay following sequencing of 1.5-2.5% of mutated DNA in a background of wild-type DNA. Assay reproducibility and accuracy were 100%. Application of the HRM assay following sequencing onto genomic DNA isolated from formalin-fixed paraffin-embedded tumour specimens of non-small cell lung cancer (n=91) and colorectal cancer (n=7) patients revealed nucleotide substitutions at codons 12 or 13, including a homozygous mutation, in 33 (34%) and 5 (5%) cases, respectively. Comparison to conventional nested-PCR following cycle-sequencing showed an overall high agreement in genotype findings (kappa value of 0.96), with more mutations detected by the HRM assay following sequencing. CONCLUSIONS: HRM allows rapid, reliable and sensitive pre-screening of routine diagnostic specimens for subsequent genotyping of K-ras mutations, even if present at low abundance or homozygosity, and may considerably facilitate personalized therapy planning.
机译:背景:越来越多的证据表明,K-ras突变与患者对EGFR抑制剂治疗的反应或生存获益之间呈负相关。因此,强烈需要用于K-ras基因突变分析的快速可靠的测定法。方法:我们设计了一种基于高分辨率熔解(HRM)技术的方法,然后直接测序以确定K-ras外显子1(密码子12/13)的肿瘤基因型。结果:重建实验表明,在野生型DNA背景中对1.5-2.5%的突变DNA进行测序后,K-ras外显子1 HRM分析具有分析敏感性。分析的重现性和准确性为100%。在对从非小细胞肺癌(n = 91)和大肠癌(n = 7)患者的福尔马林固定石蜡包埋的肿瘤标本中分离的基因组DNA进行测序后,应用HRM分析后,发现12位或13位密码子处的核苷酸取代。包括纯合突变,分别在33(34%)和5(5%)例中。循环测序后与常规巢式PCR的比较显示,基因型发现总体一致(kappa值为0.96),测序后HRM分析检测到更多突变。结论:HRM可以对常规诊断标本进行快速,可靠和灵敏的预筛,以进行后续的K-ras突变基因分型,即使存在的丰度或纯合度较低,也可以极大地促进个性化的治疗计划。

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