Suppression Probe Enrichment for Highly Sensitive and Multiplexed Detection of RAS Mutations in Colorectal Cancer
Xinglei Su, Yunpei Si, Wenle Huang, Haipei Zhao, Sirui Leong, Yi Zhang, Yi Wu, Xuehao Xiu, Ping Song
Journal:ANALYTICAL CHEMISTRY
IF:7.3
DOI:10.1021/acs.analchem.5c06785
PMID:
Published:2026-03-12
research field:肿瘤学临床检验科学精准医学分子诊断癌症基因组学
Abstract
Although RAS mutations are concentrated in specific hotspots, their clinical detection remains reliant on next-generation sequencing (NGS), which is hindered by high costs, long turnaround times, and substantial sample requirements. Herein, we report suppression probe enrichment (SPE), a thermodynamically driven low-frequency-mutation enrichment integrated with multiplex TaqMan probes for ultrasensitive detection of RAS mutations. The SPE assay covers 286 mutation types across the three major RAS genes, which is 86.8% of the clinically relevant mutations in the Cancer Genome Atlas database. It achieves a 20-fold sensitivity improvement over conventional methods, with a limit of detection as low as 0.05% variant allele frequency. Compared to NGS, SPE reduces detection time by approximately 7-fold, lowers costs by 3 orders of magnitude, and requires only 1 mL of plasma. We applied SPE to 57 tissue and 83 blood CRC samples, achieving 93.8% positive concordance and 100% true negative rate relative to NGS. For 30 paired tissue-plasma samples, the overall concordance was 93.33% with a positive concordance of 86.67%. These findings highlight SPE as a cost-effective, rapid, and highly sensitive approach for clinical RAS genotyping in CRC and for guiding targeted therapy.
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