Huang Di, He Yichen, Xu Chutian, Shen Peijie, Li Min, Fang Mengjun, Xu Zhinan, Fang Xiangming
Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310030, China.
Institute of Biological Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310030, China.
Anal Chem. 2025 Feb 11;97(5):3026-3035. doi: 10.1021/acs.analchem.4c06066. Epub 2025 Jan 31.
Integrating recombinase-polymerase amplification (RPA) with CRISPR-Cas12a holds significant potential to simplify and improve nucleic acid diagnostic procedures. However, current strategies face limitations, such as complexity, reduced efficiency, and potential compromises in Cas12a activity. In response, we developed a NAzyme-triggered quilibrium transfer with a elf-activated SPR-Cas12a iosnso (DESCRIBER) for integrated nucleic acid detection. This platform features varying balance points to minimize interference between RPA and Cas12a in one pot and maximize their activity at different stages. Initially, the reaction focused on RPA, while Cas12a was silenced by circular-crRNA (C-crRNA). Then, DNAzyme, the activator, was generated during the RPA process, which linearizes C-crRNA to activate Cas12a and transfer the equilibrium toward signal readout. Meanwhile, activated Cas12a can further linearize C-crRNA to promote self-activation and accelerate equilibrium transfer. According to this principle, highly sensitive detection of the HIV-1 genome, as low as 500 CPs/mL, was achieved within 1 h while maintaining universality in detecting common subtypes and specificity against opportunistic infectious pathogens. Compared with qRT-PCR, it also exhibited good accuracy in detecting 35 spiked samples. Overall, we believe that the proposed strategy will enhance existing CRISPR systems to promote their practical applications in clinical diagnosis.
将重组酶聚合酶扩增(RPA)与CRISPR-Cas12a整合,在简化和改进核酸诊断程序方面具有巨大潜力。然而,目前的策略存在局限性,如复杂性、效率降低以及Cas12a活性可能受到影响。对此,我们开发了一种由NAzyme触发的平衡转移与elf激活的SPR-Cas12a离子传感器(DESCRIBER)用于整合核酸检测。该平台具有不同的平衡点,可在同一反应体系中最小化RPA和Cas12a之间的干扰,并在不同阶段最大化它们的活性。最初,反应聚焦于RPA,而Cas12a被环状crRNA(C-crRNA)沉默。然后,在RPA过程中产生激活剂DNAzyme,它使C-crRNA线性化以激活Cas12a并将平衡转移至信号读出。同时,激活的Cas12a可进一步使C-crRNA线性化以促进自我激活并加速平衡转移。根据这一原理,在1小时内实现了对HIV-1基因组的高灵敏度检测,低至500拷贝数/毫升,同时在检测常见亚型时保持通用性,并对机会性感染病原体具有特异性。与qRT-PCR相比,在检测35个加标样本时也表现出良好的准确性。总体而言,我们认为所提出的策略将增强现有的CRISPR系统,以促进其在临床诊断中的实际应用。