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crRNA 的末端化学修饰可提高 CRISPR-Cas 用于即时核酸检测的性能。

Terminal Chemical Modifications of crRNAs Enable Improvement in the Performance of CRISPR-Cas for Point-of-Care Nucleic Acid Detection.

机构信息

Guangdong Provincial Key Laboratory of Sensor Technology and Biomedical Instrument, School of Biomedical Engineering, Shenzhen Campus of Sun Yat-sen University, Shenzhen 518107, China.

Zhejiang Key Laboratory of Multiomics and Molecular Enzymology, Yangtze Delta Region Institute of Tsinghua University, Zhejiang, Zhejiang 314006, China.

出版信息

Anal Chem. 2024 Oct 15;96(41):16346-16354. doi: 10.1021/acs.analchem.4c03698. Epub 2024 Sep 30.

Abstract

CRISPR-Cas systems, harnessing their precise nucleic acid recognition via CRISPR RNA (crRNA), offer promise for the accurate testing of nucleic acids in the field. However, the inherent susceptibility of crRNA to degradation poses challenges for accurate detection in low-resource settings. Here, we utilized the chemically modified crRNA for the CRISPR-Cas-based assay (CM-CRISPR). We found that the extension and chemical modification to crRNA significantly enhanced the -cleavage activity of LbCas12a. The chemically modified crRNA was resistant to degradation, and CM-CRISPR showed superior detection capability in complex environments. CM-CRISPR could be combined with recombinase polymerase amplification (RPA) and applied in a droplet digital platform, enabling attomolar-level sensitivity. We also developed a portable and automated device for a digital CRISPR assay, which is amenable to point-of-care testing (POCT). The extraction-free procedure was integrated with this assay to streamline the workflow, and clinical samples were successfully detected. This work finds a simple and efficient way to improve the performance of CRISPR-Cas and develops a portable platform for POCT, representing a significant advance toward practical applications of CRISPR-based diagnostics.

摘要

CRISPR-Cas 系统利用其通过 CRISPR RNA(crRNA)实现的精确核酸识别,为在现场准确测试核酸提供了可能。然而,crRNA 固有的易降解性给资源有限环境下的准确检测带来了挑战。在这里,我们利用化学修饰的 crRNA 进行基于 CRISPR-Cas 的检测(CM-CRISPR)。我们发现 crRNA 的延伸和化学修饰显著增强了 LbCas12a 的切割活性。化学修饰的 crRNA 不易降解,CM-CRISPR 在复杂环境中具有优越的检测能力。CM-CRISPR 可以与重组酶聚合扩增(RPA)结合,并应用于液滴数字平台,实现纳摩尔级别的灵敏度。我们还开发了一种用于数字 CRISPR 检测的便携式自动化设备,适用于即时护理检测(POCT)。该无提取程序与该检测相结合,简化了工作流程,并成功检测了临床样本。这项工作找到了一种简单有效的方法来提高 CRISPR-Cas 的性能,并开发了一个用于 POCT 的便携式平台,这是 CRISPR 诊断实际应用的重大进展。

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