Hu Fei, Liu Kaihui, Zhang Yunyun, Zhao Shuhao, Zhang Tianyi, Yao Cuiping, Lv Xing, Wang Jing, Liu Xiaolong, Peng Niancai
State Key Laboratory for Manufacturing Systems Engineering, School of Instrument Science and Techonology, Xi'an Jiaotong University, Xi'an 710054, China.
The United Innovation of Mengchao Hepatobiliary Technology Key Laboratory of Fujian Province, Mengchao Hepatobiliary Hospital of Fujian Medical University, Fuzhou 350007, China.
Anal Chem. 2025 Jan 14;97(1):658-666. doi: 10.1021/acs.analchem.4c05026. Epub 2025 Jan 4.
Infectious diseases, especially respiratory infections, have been significant threats to human health. Therefore, it is essential to develop rapid, portable, and highly sensitive diagnostic methods for their control. Herein, a short-time preamplified, one-pot clustered regularly interspaced short palindromic repeats (CRISPR) nucleic acid detection method (SPOC) is developed by combining the rapid recombinase polymerase amplification (RPA) with CRISPR-Cas12a to reduce the mutual interference and achieve facile and rapid molecular diagnosis. SPOC can reduce the detection time and stably detect up to 1 copy/μL of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) RNA without affecting the detection sensitivity. A highly sensitive one-pot assay integrated with reverse transcription RPA is achieved by wrapping paraffin with a specific melting point on the lyophilized CRISPR reagent surface. A self-heating pack is designed based on thermodynamic principles to melt the paraffin and release CRISPR reagents, enabling low-cost and time-saving detection. Notably, the designed system, coupled with RNA extraction-free technology, can achieve "sample-in-answer-out" detection of the SARS-CoV-2 Orf1ab gene within 22 min using smartphone imaging. The developed assay is validated on 12 clinical samples, and the results 100% correlate with real-time polymerase chain reaction. SPOC is time-saving, is easy to operate, and can eliminate centrifugal and complex hardware devices, satisfying the demand for point-of-care diagnostics in resource-constrained settings.
传染病,尤其是呼吸道感染,一直是对人类健康的重大威胁。因此,开发快速、便携且高度灵敏的诊断方法对于控制这些疾病至关重要。在此,通过将快速重组酶聚合酶扩增(RPA)与CRISPR-Cas12a相结合,开发了一种短时间预扩增的一锅式成簇规律间隔短回文重复序列(CRISPR)核酸检测方法(SPOC),以减少相互干扰并实现简便快速的分子诊断。SPOC可以缩短检测时间,并能稳定检测低至1拷贝/μL的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)RNA,而不影响检测灵敏度。通过在冻干的CRISPR试剂表面包裹具有特定熔点的石蜡,实现了一种与逆转录RPA集成的高灵敏度一锅式检测方法。基于热力学原理设计了一种自热包,用于熔化石蜡并释放CRISPR试剂,实现低成本且省时的检测。值得注意的是,所设计的系统结合无RNA提取技术,使用智能手机成像可在22分钟内实现对SARS-CoV-2 Orf1ab基因的“样本进-结果出”检测。所开发的检测方法在12份临床样本上得到验证,结果与实时聚合酶链反应100%相关。SPOC省时、易于操作,且可省去离心和复杂的硬件设备,满足资源有限环境下即时诊断的需求。