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一种基于智能手机便携式设备的快速超灵敏RPA辅助CRISPR-Cas12a/Cas13a核酸诊断平台。

A rapid and ultrasensitive RPA-assisted CRISPR-Cas12a/Cas13a nucleic acid diagnostic platform with a smartphone-based portable device.

作者信息

Hu Fei, Zhang Yunyun, Yang Yue, Peng Lixin, Cui Shuhui, Ma Qing, Wang Fangning, Wang Xincheng

机构信息

State Key Laboratory for Manufacturing Systems Engineering, School of Instrument Science and Techonology, Xi'an Jiaotong University, Xi'an, 710054, China.

State Key Laboratory for Manufacturing Systems Engineering, School of Instrument Science and Techonology, Xi'an Jiaotong University, Xi'an, 710054, China.

出版信息

Biosens Bioelectron. 2025 Jul 15;280:117428. doi: 10.1016/j.bios.2025.117428. Epub 2025 Mar 31.

Abstract

The spread of infectious diseases can be controlled by early identification of the source of infection and timely diagnosis to stop transmission. Real-time fluorescence quantitative polymerase chain reaction (PCR) is the current gold standard for pathogen diagnosis, with high detection sensitivity and accuracy. However, due to the need for specialized equipment, laboratories, and personnel, it is difficult to achieve rapid and immediate diagnosis during large-scale infectious disease outbreaks. Herein, an optimized CRISPR-based nucleic acid detection method was developed that reduces the CRISPR detection time to 15 min while maintaining high sensitivity. By using nucleic acid extraction-free and lyophilization techniques, the 'sample-in-result-out' detection of the two target genes of SARS-CoV-2, the human internal reference gene, and the negative quality control sample can be completed in 20 min, with a sensitivity of 0.5 copies/μL. Additionally, to facilitate the application, a smartphone-based reverse transcription-recombinase polymerase amplification (RT-RPA)-assisted CRISPR-rapid, portable nucleic acid detection device was developed, integrating functions such as heating, centrifugation, mixing, optical detection and result output. Process control, output, and uploading of detection results were conducted through smartphones. The device is not dependent on a power supply and can perform on-site rapid virus detection in resource-limited settings. Real-time uploading of results helps to rapidly implement epidemic prevention and control measures, providing an innovative means of detection, control, and prevention of virus-based infectious diseases. This important work provides a new and effective tool to manage potential future outbreaks of infectious diseases.

摘要

通过早期识别感染源并及时诊断以阻止传播,可以控制传染病的传播。实时荧光定量聚合酶链反应(PCR)是目前病原体诊断的金标准,具有高检测灵敏度和准确性。然而,由于需要专门的设备、实验室和人员,在大规模传染病爆发期间难以实现快速即时诊断。在此,开发了一种优化的基于CRISPR的核酸检测方法,该方法将CRISPR检测时间缩短至15分钟,同时保持高灵敏度。通过使用无需核酸提取和冻干技术,可在20分钟内完成对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的两个靶基因、人类内参基因和阴性质量控制样品的“进样出结果”检测,灵敏度为0.5拷贝/微升。此外,为便于应用,开发了一种基于智能手机的逆转录重组酶聚合酶扩增(RT-RPA)辅助的CRISPR快速便携式核酸检测装置,集成了加热、离心、混合、光学检测和结果输出等功能。检测结果的过程控制、输出和上传通过智能手机进行。该装置不依赖电源,可在资源有限的环境中进行现场快速病毒检测。结果的实时上传有助于迅速实施疫情防控措施,为基于病毒的传染病的检测、控制和预防提供了一种创新手段。这项重要工作为应对未来潜在的传染病爆发提供了一种新的有效工具。

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