4.8 Article

Photocontrolled crRNA activation enables robust CRISPR-Cas12a diagnostics

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2202034119

关键词

CRISPR-Cas12a; nucleic acid detection; RPA; PC linker; one-pot assay

资金

  1. National Natural Science Foundation of China [32150019, 91959128, 21874049]
  2. Key Research and Development Plan of Hubei Province [2020BCA090]
  3. Basic and Applied Basic Research Foundation of Guangdong Province [2021A1515220164]

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This article proposes a CRISPR diagnostic method based on optochemical control, which addresses the issues of contamination risks and insufficient sensitivity in nucleic acid amplification-based diagnostics. The method achieves comparable detection sensitivity and specificity to PCR, and avoids contamination risks through photocontrol.
CRISPR diagnostics based on nucleic acid amplification faces barriers to its commercial use, such as contamination risks and insufficient sensitivity. Here, we propose a robust solution involving optochemical control of CRISPR RNA (crRNA) activation in CRISPR detection. Based on this strategy, recombinase polymerase amplification (RPA) and CRISPR-Cas12a detection systems can be integrated into a completely closed test tube. crRNA can be designed to be temporarily inactivated so that RPA is not affected by Cas12a cleavage. After the RPA reaction is completed, the CRISPR-Cas12a detection system is activated under rapid light irradiation. This photocontrolled, fully closed CRISPR diagnostic system avoids contamination risks and exhibits a more than two orders of magnitude improvement in sensitivity compared with the conventional onepot assay. This photocontrolled CRISPR method was applied to the clinical detection of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) RNA, achieving detection sensitivity and specificity comparable to those of PCR. Furthermore, a compact and automatic photocontrolled CRISPR detection device was constructed.

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