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A Low-Cost Paper-Based Electrochemical Aptasensor for HER-2 Detection Using TiCT MXene.

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ACS applied bio materials 📖 저널 OA 15.6% 2022: 1/1 OA 2024: 1/4 OA 2025: 1/16 OA 2026: 7/43 OA 2022~2026 2026 Vol.9(3) p. 1390-1402
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Rawat R, Singh S, Singh G, Goswami T, McLaughlin J, Mathur A

📝 환자 설명용 한 줄

Breast cancer remains a leading cause of mortality among women worldwide, emphasizing the need for early, rapid, and cost-effective diagnostic tools.

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APA Rawat R, Singh S, et al. (2026). A Low-Cost Paper-Based Electrochemical Aptasensor for HER-2 Detection Using TiCT MXene.. ACS applied bio materials, 9(3), 1390-1402. https://doi.org/10.1021/acsabm.5c01857
MLA Rawat R, et al.. "A Low-Cost Paper-Based Electrochemical Aptasensor for HER-2 Detection Using TiCT MXene.." ACS applied bio materials, vol. 9, no. 3, 2026, pp. 1390-1402.
PMID 41540559 ↗

Abstract

Breast cancer remains a leading cause of mortality among women worldwide, emphasizing the need for early, rapid, and cost-effective diagnostic tools. In this study, we report a low-cost, paper-based electrochemical aptasensor for the specific detection of human epidermal growth factor receptor 2 (HER-2), a critical biomarker associated with breast cancer progression. The sensor was fabricated on a carbon screen-printed paper electrode (CSPPE) modified with TiCT MXene, a two-dimensional transition metal carbide providing excellent conductivity and abundant surface sites for aptamer immobilization. The HER-2-specific aptamer was covalently attached onto the MXene surface via EDC-NHS coupling, and methylene blue (MB) served as a redox mediator to monitor binding events. The developed biosensor exhibited excellent analytical performance, achieving a wide linear detection range from 10 fg/mL to 100 μg/mL, a limit of detection (LOD) of 9.3 fg/mL, a limit of quantification (LOQ) of 28.4 fg/mL and a sensitivity of 10.05 μA/fg/mL/mm. Furthermore, the aptasensor demonstrated high selectivity, reproducibility, and operational stability, maintaining its sensing performance for up to one month under ambient storage conditions. The integration of MXene's superior electrical conductivity with a disposable paper-based platform presents a highly promising approach for point-of-care HER-2 detection, contributing toward accessible, rapid, and cost-effective breast cancer diagnostics.

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🏷️ 같은 키워드 · 무료전문 — 이 논문 MeSH/keyword 기반