NFC-enabled sensing platform for the onsite determination of asparagine in food
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Published version
Author(s)
Lee, Hong Seok
Panesar, Ravleen Kaur
Gonzalez-Macia, Laura
Barandun, Giandrin
Güder, Firat
Type
Journal Article
Abstract
The formation of acrylamide, a potent neurotoxin, during the cooking of common foods like potatoes, and coffee presents a significant food safety challenge. This reaction is driven by free asparagine, yet current methods for its quantification are lab-based, slow, and expensive. To address this, we developed the first fully-integrated, batteryless, and wireless point-of-need sensor for rapid detection of free asparagine. Our innovation lies in coupling a disposable, chemically-functionalized paper-based gas sensor with a Near Field Communication (NFC) integrated circuit. This architecture allows a standard smartphone to wirelessly power the sensor and receive real-time data. The device operates by detecting ammonia gas, which is released during the enzymatic degradation of asparagine. Our proof-of-concept system achieves a detection limit of 3.28 μg/mL, sufficient for quantifying asparagine in food products. By eliminating the need for external power sources or readers, this technology provides a practical and cost-effective tool to improve quality control and safety in food manufacturing.
Date Issued
2026-02-01
Date Acceptance
2025-12-11
Citation
Materials Today Bio, 2026, 36
ISSN
2590-0064
Publisher
Elsevier
Journal / Book Title
Materials Today Bio
Volume
36
Copyright Statement
© 2025 Published by Elsevier Ltd
Identifier
10.1016/j.mtbio.2025.102675
Publication Status
Published
Article Number
102675
Date Publish Online
2025-12-12
