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String-powered microfluidic chip integrating heparin-mediated one-pot RT-RPA/CRISPR-Cas12a for multiplex detection of HFMD viruses

Citation

Chen Z, Mao K, Meng H, et al., (2026) String-powered microfluidic chip integrating heparin-mediated one-pot RT-RPA/CRISPR-Cas12a for multiplex detection of HFMD viruses. Analytical Chemistry, Volume 98, Issue 19, May 2026, pp. 14315-14329

Abstract

Hand, foot, and mouth disease (HFMD) is a common childhood infection caused by enteroviruses, which exhibit distinct regional and seasonal epidemiological patterns. Wastewater-based epidemiology is a crucial tool for monitoring population infection dynamics and viral subtype distribution. However, the lack of effective on-site viral detection methods limits timely early warning and effective surveillance of infectious disease outbreaks. This study developed a one-pot RT-RPA/CRISPR-Cas12a assay-based, string-powered flywheel microfluidic chip for the multiplex detection of HFMD viruses in wastewater. First, by leveraging the regulatory effect of heparin sodium on CRISPR/Cas12a activity, a one-pot RT-RPA/CRISPR-Cas12a system was constructed to detect four major subtypes of HFMD virus (EV-A71, CV-A16, CV-A6, and CV-A10). Subsequently, this method was integrated into a pull-wire, flywheel-type, dual-axis centrifugal microfluidic chip, named the Heparin-Inhibited CRISPR-Associated System Chip (HICAS-Chip), enabling integrated enrichment, purification, elution, and multiplexed detection. The HICAS-Chip allowed visual detection of nucleic acids at 10 aM sensitivity within 1 h, corresponding to the sensitivity of the one-pot RT-RPA/CRISPR-Cas12a assay. During a year-long wastewater monitoring program in Guiyang City, China, the HICAS-Chip identified EV-A71 and CV-A10 as the predominant circulating subtypes, with incidence peaks observed in June, November, and December. The wastewater detection results obtained using HICAS-Chip showed high concordance (95.83%) with RT-qPCR assays. This platform provides an efficient portable device for the early detection and continuous monitoring of HFMD epidemic trends by wastewater-based epidemiology.

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3207 Medical Microbiology, 32 Biomedical and Clinical Sciences, Bioengineering, Emerging Infectious Diseases, Infectious Diseases, Prevention, 4.1 Discovery and preclinical testing of markers and technologies, Infection, 3 Good Health and Well Being, Analytical Chemistry, 3205 Medical biochemistry and metabolomics, 4004 Chemical engineering, Hand, foot and mouth disease, Heparin sodium, Microfluidics, One-pot CRISPR/Cas12a, Wastewater-based epidemiology

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The authors acknowledge the National Natural Science Foundation of China (42377456), the Youth Innovation Promotion Association CAS (2023415), the Hebei Provincial Science and Technology Projects (24291703Z), CAS-ANSO Fellowship (CAS-ANSO-FS-2024-34), the Guizhou Provincial Science and Technology Projects (Qiankehejichu ZD[2026]147, Qiankexie KJLYRC-[2026]157, Qiankehe Platform Talents-GCC [2023] 046). ZY thanks The Leverhulme Trust Research Leadership Awards (RL-2022–041).

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