Wenyu Chen, Jiehong Fang, Meijuan Ran, Liping Wang, Shengyi Cui, Qi Chen, Jing Cui, Yifei Chen, Jing Wang, Chenze Lu, Han Jiang
Foodborne Vibrio species commonly contaminate seafood and often co-occur, complicating rapid on-site detection. We developed a centrifugal microfluidic chip integrating one-pot RPA-CRISPR/Cas12a for simultaneous detection of four key species: V. parahaemolyticus, V. vulnificus, V. cholerae, and V. alginolyticus. In this system, target-specific RPA amplification generates amplicons that activate Cas12a-mediated trans-cleavage of fluorescent ssDNA reporters, producing target-dependent fluorescence signals for pathogen identification. The chip has eight units, each with four reaction chambers with lyophilized target-specific reagents, enabling a simple "DNA-in, result-out" workflow. Operating at 39 °C, the assay is completed within 60 min in a closed system to minimize contamination. It shows high specificity with no cross-reactivity. Limits of detection are 100 copies/μL for V. parahaemolyticus and V. vulnificus, and 101 copies/μL for V. cholerae and V. alginolyticus. Performance in spiked and real shrimp samples matched qPCR, with 100% sensitivity and specificity. The portable platform costs about $3.29 per test. This platform offers a practical approach for on-site multiplex screening of pathogenic Vibrio in seafood.