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Unraveling the influence of CRISPR/Cas13a reaction components on enhancing trans-cleavage activity for ultrasensitive on-chip RNA detection

  • Qian He
  • , Qun Chen
  • , Lijin Lian
  • , Jiuxin Qu
  • , Xi Yuan
  • , Chuhui Wang
  • , Lidan Xu
  • , Jiazhang Wei
  • , Shaoling Zeng
  • , Dongmei Yu
  • , Yuhan Dong
  • , Yongbing Zhang
  • , Lin Deng
  • , Ke Du
  • , Canyang Zhang
  • , Vijay Pandey
  • , Ijaz Gul*
  • , Peiwu Qin*
  • *Corresponding author for this work
  • Hangzhou Dianzi University
  • Tsinghua University
  • Shenzhen Third People’s Hospital
  • Harbin Medical University
  • People's Hospital of Guangxi Zhuang Autonomous Region
  • Animal and Plant Inspection and Quarantine Technology Center
  • Shandong University
  • Harbin Institute of Technology Shenzhen
  • Shenzhen Bay Laboratory
  • University of California at Riverside

Research output: Contribution to journalArticlepeer-review

Abstract

The CRISPR/Cas13 nucleases have been widely documented for nucleic acid detection. Understanding the intricacies of CRISPR/Cas13’s reaction components is pivotal for harnessing its full potential for biosensing applications. Herein, we report on the influence of CRISPR/Cas13a reaction components on its trans-cleavage activity and the development of an on-chip total internal reflection fluorescence microscopy (TIRFM)-powered RNA sensing system. We used SARS-CoV-2 synthetic RNA and pseudovirus as a model system. Our results show that optimizing Mg2+ concentration, reporter length, and crRNA combination significantly improves the detection sensitivity. Under optimized conditions, we detected 100 fM unamplified SARS-CoV-2 synthetic RNA using a microtiter plate reader. To further improve sensitivity and provide a new amplification-free RNA sensing toolbox, we developed a TIRFM-based amplification-free RNA sensing system. We were able to detect RNA down to 100 aM. Furthermore, the TIRM-based detection system developed in this study is 1000-fold more sensitive than the off-coverslip assay. The possible clinical applicability of the system was demonstrated by detecting SARS-CoV-2 pseudovirus RNA. Our proposed sensing system has the potential to detect any target RNA with slight modifications to the existing setup, providing a universal RNA detection platform. Graphical Abstract: (Figure presented.)

Original languageEnglish
Article number466
JournalMicrochimica Acta
Volume191
Issue number8
DOIs
StatePublished - Aug 2024
Externally publishedYes

Keywords

  • Amplification-free
  • CRISPR/Cas13a
  • RNA detection
  • TIRFM
  • crRNA combination

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