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Nanopore Polyphenol Fingerprinting with Anthocyanin-Catechin Signatures for Tea Quality Grading and Cultivar
Pingping Fan1, Jianan Li1,2, Ye Sun1
1School of Materials and Energy, University of Electronic Science and Technology, Chengdu 611731, China.
Abstract:
Tea, a nutritionally and culturally vital beverage, demands reliable quality grading and cultivar authentication, particularly for high-value functional varieties. Yet the complex tea matrix and subtle compositional differences among closely related cultivars render on-site identification challenging. While nanopore sensing shows great potential, its application to tea analysis remains unexplored. Herein, we present a rapid single-molecule sensing strategy using phenylboronic acid-modified MspA-90PBA nanopores, achieving accurate tea grading and cultivar discrimination via anthocyanin-catechin dual-component fingerprinting. A total of 10 tea polyphenols (2 anthocyanins and 8 catechins) generate distinct current signals. A machine-learning model reaches 94.2% accuracy for polyphenol identification in complex tea matrixes. This platform precisely discriminates anthocyanin-enriched Zijuan tea from its closely related Ziya tea cultivar and grades Zijuan samples of various quality levels. This high-precision approach provides an effective tool for tea authentication, quality evaluation, and adulteration detection, with broad potential for rapid natural product assessment.

