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Research Article | Open Access

Barcode-enabled detection of multiple meat adulterants by single-fluorescence-channel digital PCR on a self-digitalization biochip

Kaiming Xi1,2Zhang Pan3( )Xinchen Qiu2,4Chen Jing3Shengran Pan5Junwei Li5 ( )
Preclinical Medicine School, Qiqihar Medical University, Qiqihar 161006, China
Key Laboratory of Robotic Sensing and Human–Robot Interactions of Hebei Province, School of Mechanical Engineering, Hebei University of Technology, Tianjin 300401, China
Department of Basic Courses, Tangshan University, Tangshan 063000, China
Arizona College of Technology at Hebei University of Technology, Tianjin 300140, China
Key Laboratory of Molecular Biophysics of Hebei Province, School of Health Sciences and Biomedical Engineering, Hebei University of Technology, Tianjin 300131, China
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Abstract

Adulteration of high-value meats with cheaper alternatives poses significant health and economic risks. Therefore, the integrity of commercial meat products is of critical concern for both consumers and food safety authorities. To address this challenge, we have developed a barcode-enabled single-fluorescence-channel method leveraging the multiplex digital polymerase chain reaction for detecting potential meat adulterants. Our device employs a self-digitizing polydimethylsiloxane microfluidic biochip, which enables the automated loading of polymerase chain reaction reagents into thousands of microchambers without external pumps. By utilizing pre-designed barcodes as specific identifiers, we can distinguish DNA templates extracted from various animal species with only a single fluorescence channel. As a demonstration, this method is used to detect four types of meat (beef, chicken, pork, and duck) with a detection limit of up to 3 copies/μL, meeting the requirements for meat adulteration detection applications. This approach holds great potential for field testing of food adulteration or point-of-care applications when used in conjunction with portable single-channel fluorescence microscopes.

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Nanotechnology and Precision Engineering

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Cite this article:
Xi K, Pan Z, Qiu X, et al. Barcode-enabled detection of multiple meat adulterants by single-fluorescence-channel digital PCR on a self-digitalization biochip. Nanotechnology and Precision Engineering, 2026, 9(2). https://doi.org/10.1063/5.0305726

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Received: 08 October 2025
Accepted: 25 December 2025
Published: 23 April 2026
© 2026 Author(s).

All article content, except where otherwise noted, is licensed under a Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/).