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Updated: Aug 20, 2026

DNA Virus Detection System Based on RPA-CRISPR/Cas12a-SPM and Deep Learning
Published on: May 10, 2024
Ultrasensitive and specific detection of Coxsackievirus A10 using the reverse transcription multiple cross
Yumei Cao1, Lihuan Ma1, Qi Liang2
1School of Public Health, Key Laboratory of Environmental Pollution Monitoring and Disease Control, Ministry of Education, Guizhou Medical University, Guiyang, Guizhou, 561113, PR China; Department of Clinical laboratory, The First People's Hospital of Guiyang, Guiyang, Guizhou, 550004, PR China.
Abstract:
The escalating global burden of Coxsackievirus A10 (CVA10)-associated hand, foot, and mouth disease (HFMD), coupled with the lack of specific antiviral therapies, has created an urgent need for diagnostic methods that balance sensitivity, speed, and field-deployability, a balance that current molecular tools have yet to achieve. To address this gap, we developed CVA10-RT-MCDA-CRISPR analysis, an integrated platform combining reverse transcription multiple cross displacement amplification (RT-MCDA) with CRISPR-Cas12a-mediated detection. Targeting the conserved VP1 of the CVA10 gene, we designed a set of MCDA primers, along with an engineered CP1 primer and a specific gRNA. The assay achieved a detection limit of 0.28 copies/μL for CVA10 RNA standards and showed no cross-reactivity with non-target pathogens. Performance was validated using 112 clinical specimens, confirming the assay's feasibility in real-world settings. Collectively, these findings establish the CVA10-RT-MCDA-CRISPR assay as a practical solution that bridges the gap between laboratory-grade sensitivity and field-ready simplicity. By integrating isothermal amplification with CRISPR-based detection in a streamlined workflow, this platform not only addresses the specific challenges of CVA10 diagnosis but also exemplifies a versatile diagnostic framework applicable to other emerging pathogens in resource-limited settings.
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