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Development and extensive analytical validation of deep amplicon sequencing for detecting KRAS and NRAS mutations in metastatic colorectal cancer samples

Rastislav Slavkovský, Jana Stránská, Veronika Věnsková, Sylwia Jančik, Lucie Kotková, Jarmila Šimová, Petr Vojta, Patrik Flodr, Marie Bartoušková, Hana Študentová, Marián Hajdúch,  Jiří Drábek

Abstract:

The presence of wild-type RAS alleles, as determined by genotyping codons 12, 13, 59, 61, 117, and 146, is a prerequisite for personalized anti-EGFR treatment of metastatic colorectal cancer (mCRC) patients. Here we describe analytical validation of in-house developed massively parallel sequencing technology (MPS) in comparison to the in vitro diagnostics (IVD) certified qPCR method. DNA extracted from FFPE samples from CRC patients (n=703) and reference standards (n=33) were tested for KRAS and NRAS mutations in 6 codons of exons 2, 3, and 4 using deep amplicon sequencing (DAS) on a MiSeq benchtop sequencer (Illumina). Two different amplicon lengths and two different library preparation methods (long-RAS and short-RAS) were tested in order to evaluate their impact on DAS performance. In parallel, identical tumor DNA was tested by the following IVD assays: therascreen KRAS RGQ PCR Kit (Qiagen), cobas® KRAS Mutation Test (Roche Diagnostics), and SNaPshot assay (Thermo Fisher Scientific). Both DAS assays detected all the mutations present in reference standards and external quality control samples, except for the artificially generated KRAS codon 146 mutation. The DAS assays performed sufficient analytical specificity and sensitivity (≥0.95). The use of shorter amplicons prolonged the preparation steps but significantly improved the sequencing success rate of FFPE-derived DNA. RAS mutation frequencies in the Czech CRC patients were similar to previous reports, although rare mutations were also detected. DAS with short amplicons is a good strategy for routine assessment of somatic mutations in low-quality FFPE-derived DNA.

Received date: 09/07/2021

Accepted date: 11/02/2021

Ahead of print publish date: 12/06/2021

Issue: 1/2022

Volume: 69

Pages: 203 — 215

Keywords: deep amplicon sequencing, next-generation sequencing, formalin-fixed paraffin-embedded, predictive diagnostics, KRAS, NRAS, colorectal carcinoma

Supplementary files:
N1276 Suppl Material 1.docx
N1276 Suppl Material 2.xlsm

DOI: 10.4149/neo_2021_210907N1276

Pubmed

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