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PubMed · 42699109

Simultaneous quantitative detection of multiple low-frequency variants by high-dynamic-range capillary electrophoresis.

Abstract

Sensitive and quantitative detection of low-frequency variants across multiple loci is critical for nucleic acid-based diagnostics, yet clinical implementation requires a balance among sensitivity, multiplexing capacity, cost, and operational simplicity. We previously developed a high-dynamic-range capillary electrophoresis system capable of detecting variants at allele frequencies below 1%; however, its application was limited to single-locus analysis. Here, we expanded this platform to multiplex detection by incorporating mobility-shift strategies into the assay design. This approach enabled simultaneous analysis of 15 hotspot variants across three clinically relevant loci: KRAS codons 12 and 13 and GNAS codon 201. Validation using synthetic oligonucleotides, formalin-fixed paraffin-embedded tissue, and liquid specimens demonstrated high quantitative accuracy over clinically relevant variant allele frequency ranges, with measured values closely matching expected values (R2 > 0.97). The assay showed high concordance with targeted amplicon sequencing and digital polymerase chain reaction for all variants at variant allele frequencies ≥1%, while also detecting selected variants below this threshold. Collectively, these results establish a multiplexed high-dynamic-range capillary electrophoresis assay for simultaneous, quantitative detection of low-frequency variants, offering a scalable and cost-effective approach for disease-focused gene panels in clinical laboratory settings.

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BibTeXRIS

Yoshihiko Hagiwara, Nobue Tamamura, Noriyuki Sumida, Yusuke Ono, Kenji Takahashi, Yanpeng Sun, Kazuya Koyama, Yu Ohtaki, Tetsuhiro Okada, Hidemasa Kawabata, Chiho Maeda, Miyuki Mori, Chiemi Matsumoto, Mayumi Suzuki, Shin-Ichi Chiba, Mishie Tanino, Kenzui Taniue, Hirokazu Kato, Motohiro Yamazaki, Yusuke Mizukami. 2026-07-30. Simultaneous quantitative detection of multiple low-frequency variants by high-dynamic-range capillary electrophoresis.. https://doi.org/10.1016/j.omtn.2026.103042

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