摆动增强ARMS法检测KRAS和BRAF突变。

Julian Hamfjord, Astrid M Stangeland, Martina L Skrede, Kjell M Tveit, Tone Ikdahl, Elin H Kure
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引用次数: 28

摘要

靶向表皮生长因子受体的单克隆抗体扩大了转移性结直肠癌患者的治疗选择范围。然而,KRAS和BRAF基因的体细胞突变已被证明是这些患者抗表皮生长因子受体治疗耐药的分子预测因子。因此,我们开发了一种敏感的突变试验,即摆动增强扩增难治突变系统,用于检测KRAS和BRAF基因中最常见的8种具有临床重要性的突变;KRAS g.34G>C (p.G12R)、g.34G>A (p.G12S)、g.34G>T (p.G12C)、g.35G>A (p.G12D)、g.35G>C (p.G12A)、g.35G>T (p.G12V)、g.38G>A (p.G13D)、BRAF g.1799T>A (p.p v600e)。基于生物信息学和引物/探针设计,共设计了28个候选设置。因此,使用合成寡核苷酸模型选择了八个候选设置。通过福尔马林固定石蜡包埋组织和细胞系的多次实验,进一步验证了该装置的有效性。结果表明,摆动增强扩增法具有快速、经济、灵敏等优点。该方法经过优化,可以处理每个聚合酶链反应1至20 ng DNA的典型模板输入,并且可以在任何实验室中使用能够处理TaqMan技术的实时聚合酶链反应仪器轻松实现。用于开发该方法的步骤可用于设计位于KRAS, BRAF或其他候选基因的其他突变的检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wobble-enhanced ARMS method for detection of KRAS and BRAF mutations.

Monoclonal antibodies targeting the epidermal growth factor receptor have expanded the range of treatment options for patients with metastatic colorectal cancer. However, somatic mutations in the KRAS and BRAF genes have proven to be molecular predictors of resistance to treatment with anti-epidermal growth factor receptor therapy in these patients. Thus, we have developed a sensitive mutation assay, wobble-enhanced amplification refractory mutation system, for detecting the 8 most commonly reported mutations of clinical importance in the KRAS and BRAF genes; KRAS g.34G>C (p.G12R), g.34G>A (p.G12S), g.34G>T (p.G12C), g.35G>A (p.G12D), g.35G>C (p.G12A), g.35G>T (p.G12V), g.38G>A (p.G13D), and BRAF g.1799T>A (p.V600E). A total of 28 candidate setups were designed based on bioinformatics and primer/probe design. Eight candidate setups were thus selected using a synthetic oligonucleotide model. The setups were further validated through several experiments using formalin-fixed paraffin-embedded tissue and cell lines. The results confirm that the wobble-enhanced amplification refractory mutation system method is quick, cost effective, and sensitive. The method is optimized to handle a typical template input of 1 to 20 ng DNA per polymerase chain reaction and can be implemented in any laboratory with ease with a real-time polymerase chain reaction instrument capable of handling TaqMan techonology. The steps used to develop this method can be implemented to design assays for other mutations located in KRAS, BRAF, or other candidate genes.

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来源期刊
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期刊介绍: Diagnostic Molecular Pathology focuses on providing clinical and academic pathologists with coverage of the latest molecular technologies, timely reviews of established techniques, and papers on the applications of these methods to all aspects of surgical pathology and laboratory medicine. It publishes original, peer-reviewed contributions on molecular probes for diagnosis, such as tumor suppressor genes, oncogenes, the polymerase chain reaction (PCR), and in situ hybridization. Articles demonstrate how these highly sensitive techniques can be applied for more accurate diagnosis.
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