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May 5, 20260 citations

Translational feasibility of a plasmonic microarray-based liquid biopsy for KRAS codon mutation detection across tissue, plasma, and urine in early colorectal cancer.

JLJi Young LeeCMChae Won MunEKEun Ran Kim

Key Points

  • The study aims to improve the detection of KRAS codon mutations for better precision oncology in early colorectal cancer.
  • Developed a 3D plasmonic KRAS microarray integrating blocked recombinase polymerase amplification with plasmon-enhanced fluorescence.
  • Utilized a single primer-probe set for detection of all KRAS codon substitutions.
  • Conducted clinical analysis on 58 patients comparing tissue, plasma, and urine samples for mutation detection.
  • Achieved detection sensitivity down to 1 fM for direct hybridization and 100 zM after amplification.
  • In mutation-positive malignant cases, showed 100% concordance between tissue, plasma, and urine samples with sufficient input.
  • Rare detection of mutations in benign tumors despite existing tissue mutations, indicating limited ctDNA release.

Abstract

Accurate detection of KRAS codon mutations is essential for precision oncology in colorectal cancer (CRC), yet conventional liquid biopsy methods often lack sufficient sensitivity for rare ctDNA variants, particularly in early diseases. We developed a three-dimensional (3D) plasmonic KRAS microarray integrating blocked recombinase polymerase amplification with plasmon-enhanced fluorescence. Quencher-modified blocking probes suppress wild-type DNA while selectively enabling mutant signal amplification. A single primer-probe set per codon allows comprehensive detection of all substitutions within KRAS codons 12/13, 61, and 146. The platform achieved detection down to 1 fM by direct hybridization and 100 zM after blocked amplification, exceeding conventional PCR and next-generation sequencing sensitivity. Codon-level specificity was validated in CRC cell lines, with distinct signals for each mutation. Clinical analysis of 58 patients showed 100% concordance between tissue, plasma, and urine in mutation-positive malignant cases when sufficient input was available, indicating accurate reflection of tumor profiles. In benign tumors, detection was rare despite tissue mutations, likely due to limited ctDNA release.This plasmonic microarray enables ultra-sensitive, specific, and non-invasive detection, supporting early diagnosis, minimal residual disease monitoring, and longitudinal CRC management.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69f988be15588823dae17a6dhttps://doi.org/10.1038/s41698-026-01452-8
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