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Ultrasensitve single-step CRISPR detection of monkeypox virus in minutes with a vest-pocket diagnostic device

Medicine and Health

Ultrasensitve single-step CRISPR detection of monkeypox virus in minutes with a vest-pocket diagnostic device

Y. Wang, H. Chen, et al.

Discover SCOPE, the groundbreaking CRISPR-based diagnostic platform that delivers rapid and sensitive detection of monkeypox virus (MPXV) in just 15 minutes! Developed by a dynamic team of researchers including Yunxiang Wang, Hong Chen, and many others, this innovative technology is set to revolutionize viral diagnostics.

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~3 min • Beginner • English
Abstract
The emerging monkeypox virus (MPXV) has raised global health concern, thereby highlighting the need for rapid, sensitive, and easy-to-use diagnostics. Here, we develop a single-step CRISPR-based diagnostic platform, termed SCOPE (Streamlined CRISPR On Pod Evaluation platform), for field-deployable ultrasensitive detection of MPXV in resource-limited settings. The viral nucleic acids are rapidly released from the rash fluid swab, saliva, and urine samples in 2 min via a streamlined viral lysis protocol, followed by a 10-min single-step recombinase polymerase amplification (RPA)-CRISPR/Cas13 reaction. A pod-shaped vest-pocket device achieves the whole process for reaction execution, signal acquisition, and result interpretation. SCOPE can detect as low as 0.5 copies/µL (2.5 copies/reaction) of MPXV within 15 min from the sample input to the answer. We validated the developed assay on 102 clinical samples from male patients/volunteers, and the testing results are 100% concordant with the real-time PCR. SCOPE achieves a single-molecular level sensitivity in minutes with a simplified procedure performed on a miniaturized wireless device, which is expected to spur substantial progress to enable the practical application of CRISPR-based diagnostic techniques in a point-of-care setting.
Publisher
Nature Communications
Published On
Apr 16, 2024
Authors
Yunxiang Wang, Hong Chen, Kai Lin, Yongjun Han, Zhixia Gu, Hongjuan Wei, Kai Mu, Dongfeng Wang, Liyan Liu, Ronghua Jin, Rui Song, Zhen Rong, Shengqi Wang
Tags
CRISPR
diagnostic platform
monkeypox virus
recombinase polymerase amplification
viral lysis
clinical validation
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