Hybridization-encoded DNA tags with paper-based readout for anti-forgery raw material tracking
Abstract
Abstract Tracking and tracing raw materials is crucial for securing global supply chains. Conventional methods like barcodes and Radio Frequency Identification (RFID) tags are effective but fall short in ensuring raw material traceability and anti-counterfeiting. This work introduces DNA as a powerful tool for source tracking, leveraging its invisibility, safety, and seamless product integration. We present DNATags–engineered DNA mixtures enabling product labeling with error tolerance–readable in the field via paper tickets that fluoresce under a mobile phone and filter device. Additionally, DNATrack employs DNA Hybridization Encoding (HyEn) for enhanced anti-forgery security. Although current costs are higher ($2-$4 per read and write), declining DNA synthesis costs, along with DNA’s unique advantages, make this approach a promising solution for future supply chain management.
Article Details
Authors (16)
Jiaming Li
Alex Crown
Peter Ney
Sergey Yekhanin
Aditi Partap
Anuja Shirole
Huiting Jiang
Sagan Russ
Max Gordon
Adaora Aroh
Jeff Nivala
Anirudh Badam
Vaishnavi Ranganathan
Karin Strauss
Ranveer Chandra
Yuan-Jyue Chen