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Analytical Chemistry· 2026Q1

Electrochemical Dual-Sensing Platform for HLA-B*13:01 Detection to Prevent Severe Cutaneous Adverse Reactions (SCARs) Induced by Dapsone and Cotrimoxazole

Jirapat Attapong, Chollanot Kaset, Nontaya Nakkam, Wichittra Tassaneeyakul et al.

Short summary

A portable electrochemical dual-sensing platform (EDP) simultaneously detects HLA-B*13:01 and a TIMP-1 control, achieving limits of detection as low as 65.5 fg (CV) and ~3 HLA-B gene copies, with 100% accuracy in clinical samples.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Developed a portable electrochemical dual-sensing platform (EDP) for simultaneous HLA-B*13:01 and TIMP-1 detection.
  • Achieved ultrasensitive detection limits of 0.992 pg (EIS) and 65.5 fg (CV), corresponding to ~3 HLA-B gene copies.
  • Utilizes sequence-specific ssDNA hybridization and methylene blue modulation for signal enhancement.
  • Validated on 100 blinded clinical samples, achieving 100% sensitivity, specificity, and accuracy.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract The HLA-B*13:01 allele is a critical biomarker for dapsone- and cotrimoxazole-induced severe cutaneous adverse reactions (SCARs). Overcoming the limitations of centralized laboratory screening, we developed a portable electrochemical dual-sensing platform (EDP) for the simultaneous, ultrasensitive detection of HLA-B*13:01 alongside a TIMP-1 internal control. On screen-printed carbon electrodes (SPCEs), TIMP-1 is captured through robust biotin–streptavidin interactions, while HLA-B*13:01 relies on sequence-specific ssDNA hybridization. Crucially, the system utilizes methylene blue (MB) to precisely modulate both electrostatic repulsion and physical steric hindrance, enhancing signal discrimination. The platform demonstrates exceptional limits of detection, reaching 0.992 pg and 65.5 fg when evaluated by electrochemical impedance spectroscopy (EIS) and cyclic voltammetry (CV), respectively. Notably, accounting for genomic copy number, this corresponds to a practical detection limit of ∼3 HLA-B gene copies (1 × 10–2 ng genomic DNA), several orders of magnitude below conventional gel electrophoresis. Validated against 100 blinded clinical samples, the EDP achieved 100% sensitivity, specificity, and accuracy using ROC-derived cut-offs. By delivering a highly scalable, portable post-PCR screening tool, this work provides a high-performance alternative to standard methods, effectively mitigating SCAR risks and advancing the global accessibility of precision medicine.

The authors' abstract, as published at the source. Analytical Chemistry, 2026 · DOI ↗

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Field: Pharmacology (Medicine)

PharmacologyMedicine