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September 17, 2025Advanced Science13 citationsOpen Access

Enhanced One‐Pot Dual‐CRISPR‐Based Assay Lyophilized on a 3D‐Printed Disc for Field‐Deployable Multiplex Bacteria Detection

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YSYuqing ShenBLBo LüBMBiao Ma

Key Points

  • The EOD-CRISPR assay achieves a sensitivity of 80%-88.9% and specificity of 92.3%-100% for detecting foodborne bacteria.
  • Using a 3D-printed disc allows for multiplex bacteria detection, facilitating rapid testing in field settings.
  • Incorporating lyophilization with protective agents, glassfiber membranes support stable storage of CRISPR reagents.
  • The dual-CRISPR approach enhances detection speed and fluorescence signal, making it suitable for point-of-need applications.

Abstract

One-pot CRISPR-based detection combining recombinase polymerase amplification (RPA) enables rapid and accurate nucleic acid testing but faces challenges in performance, multiplexing, and field-ready lyophilization. Here, an enhanced one-pot, helicase-assisted RPA (hRPA)-combined, dual-CRISPR/uAsCas12a (EOD-CRISPR) assay is described which can be lyophilized on a 3D-printed microfluidic disc to achieve field-deployable multiplex bacteria detection. In EOD-CRISPR reactions, the reaction speed, sensitivity, and fluorescence signal are significantly enhanced due to the synergistic effect of bovine serum albumin, hRPA, and uAsCas12a nuclease. The 3D-printed disc features four central chambers encircled by eight outer chambers, permitting detecting four targets simultaneously. For stable lyophilization on disc chambers, glassfiber membranes are inserted as substrates to adsorb the EOD-CRISPR reagents containing a protectant of 5% trehalose and 1% glycine. Toward point-of-need testing, EOD-CRISPR-lyophilized discs are applied to build an onsite detection platform. Through detecting synthetic food samples contaminated by four foodborne bacteria (i.e., Bacillus cereus, Salmonella enterica, Staphylococcus aureus, and Escherichia coli O157:H7), the onsite detection platform is validated and the sensitivity (80%-88.9%) and specificity (92.3%-100%) are comparable to those of standard PCR methods. Therefore, the field-deployable multiplex EOD-CRISPR assays holds great potentials for onsite bacteria detection and beyond.

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Cite This Study

Shen et al. (2025) studied this question.

synapsesocial.com/papers/68d45b2931b076d99fa5d942https://doi.org/10.1002/advs.202509355
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