CRISPR-mediated recombinase-assisted amplification for hazard assessment of Vibrio parahaemolyticus on microfluidic system

Highly sensitive and accurate detection of virulence and drug resistance genes in Vibrio parahaemolyticus ( V. parahaemolyticus ) is essential for disease prevention and the control of foodborne transmission. In this research, a novel RAA-CRISPR/Cas12a-based microfluidic hazard assessment platform (RCMHA) was developed for the identification of virulence genes tdh , trh and toxR , as well as drug resistance genes tetA , floR and sul1 of V. parahaemolyticus in seafood samples, thereby enabling hazard assessment based on the detection of hazard-associated genetic determinants. By integrating multi-channel spatial coding within an enclosed reaction, the centrifugal microfluidic chip mitigates the limited sensitivity caused by the interference between RAA amplification and Cas12a trans-cleavage in this system. Critical parameters of the RCMHA system were systematically optimized to maximize fluorescence signal output and detection efficiency, including the Cas12a/crRNA ratio, probe concentration, and RAA reaction. RCMHA system enables high-throughput simultaneous detection of all six target genes within 40 min, with the detection limits of 10 1 fg/µL. In addition, the system was successfully applied to detect artificially contaminated shrimp samples with high specificity. Therefore, the established RCMHA system offers a practical and efficient molecular detection method, with the potential for extension to other gene detection applications.

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Publication Details

Journal
BMC Microbiology
Published
2026-09-22
DOI
https://doi.org/10.1186/s12866-026-05692-3
Primary Topic
CRISPR and Genetic Engineering
Type
article
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article

CRISPR-mediated recombinase-assisted amplification for hazard assessment of Vibrio parahaemolyticus on microfluidic system

章英剑, Pengliang Zhang, Huiling Li, Jing Chen et al.
BMC Microbiology
CRISPR and Genetic Engineering
article

CRISPR-mediated recombinase-assisted amplification for hazard assessment of Vibrio parahaemolyticus on microfluidic system

章英剑, Pengliang Zhang, Huiling Li, Jing Chen, Xinran Xiang, Yuanhong Song, Haoyong Ning, Xianmin Liu, Jiaqi Zhao, Shuang Chen, Qiong Liu, Zezhen Ye
article en

Abstract

Highly sensitive and accurate detection of virulence and drug resistance genes in Vibrio parahaemolyticus ( V. parahaemolyticus ) is essential for disease prevention and the control of foodborne transmission. In this research, a novel RAA-CRISPR/Cas12a-based microfluidic hazard assessment platform (RCMHA) was developed for the identification of virulence genes tdh , trh and toxR , as well as drug resistance genes tetA , floR and sul1 of V. parahaemolyticus in seafood samples, thereby enabling hazard assessment based on the detection of hazard-associated genetic determinants. By integrating multi-channel spatial coding within an enclosed reaction, the centrifugal microfluidic chip mitigates the limited sensitivity caused by the interference between RAA amplification and Cas12a trans-cleavage in this system. Critical parameters of the RCMHA system were systematically optimized to maximize fluorescence signal output and detection efficiency, including the Cas12a/crRNA ratio, probe concentration, and RAA reaction. RCMHA system enables high-throughput simultaneous detection of all six target genes within 40 min, with the detection limits of 10 1 fg/µL. In addition, the system was successfully applied to detect artificially contaminated shrimp samples with high specificity. Therefore, the established RCMHA system offers a practical and efficient molecular detection method, with the potential for extension to other gene detection applications.

BMC Microbiology
Hainan General Hospital (CN), Hainan 301 Hospital (CN), First Affiliated Hospital of Henan University of Science and Technology (CN), Huaiyin Normal University (CN)
Life below water
Openalex Percentile: Top 18%
CRISPR and Genetic Engineering
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