Aug 2026· ACS Sensors· Vol 11, pp. 7335-7348· 0 citations· 48 references
Medicine
Abstract
CRISPR/Cas12a has emerged as a powerful tool for nucleic acid detection; however, its clinical utility is severely hampered by intrinsic limitations in single-nucleotide variant (SNV) discrimination, reliance on pre-processed single-stranded DNA (ssDNA) templates, and cumbersome multi-step workflows. Here, we report a novel molecular design principle by engineering crRNAs with site-specific dual mismatches (positions 12 and 14 relative to the PAM), which we systematically demonstrate to drastically enhance the SNV discrimination capability of Cas12a. Leveraging this breakthrough, we developed FOCUS (Fast One-step CRISPR-based Universalizable SNV detection system), an all-in-one CRISPR sensing platform that enables isothermal detection of SNVs from double-stranded DNA (dsDNA) by integrating amplification and detection in a single reaction system. FOCUS achieved attomolar-level sensitivity (13.15 aM) and ultrafast readout (< 20 min) for distinguishing the highly homologous survival motor neuron 1 (SMN1) and SMN2 genes-the gold standard challenge for SNV genotyping in spinal muscular atrophy (SMA) diagnostics. To validate its clinical translatability, FOCUS was successfully adapted to a low-cost, equipment-free assay using lateral flow strips and UV visualization, facilitating point-of-care testing (POCT). In a comprehensive validation across 175 clinical samples, FOCUS exhibited 100% diagnostic concordance with gold-standard methods for SMA (21 samples), high-risk HPV 16/18 (27 samples), Staphylococcus aureus (20 samples), and SARS-CoV-2 (107 samples). Collectively, our study establishes a generalizable engineering strategy for Cas12a crRNAs and presents FOCUS as a robust, versatile, and field-deployable solution for precision SNV genotyping, underscoring the translational medicine value of FOCUS in molecular diagnostics.
A crRNA-universal, sensitive and specific CRISPR-Cas12a detection platform, termed DESIC (double-end blocker and split-input mediated CRISPR-Cas12a system), for single-base mutation detection, targeting four prevalent pancreatic cancer KRAS mutations and optimized the system to achieve optimal discrimination.
Shi-Zhen Li, Yang-Wei Liao, Xiao-Xiang Wang et al.· Biosensors & bioelectronics· 0 citations
Drug-resistance Tuberculosis (TB) is a major threat to global public health. Simple and precise detection of the mutations associated with drug resistance is still a significant challenge. CRISPR-based nucleic acid detection has emerged as a transformative technology in molecular diagnostics due to its high specifici...
Xin-Yi Liao, Jun-Hong Chen, Yun-Zhu Wan et al.· Analytical Chemistry· 0 citations
A one-pot self-primer isothermal exponential amplification reaction (SP-EXPAR) combined with a CRISPR/Cas14a assay was developed for detecting KRAS G12C and G12D and demonstrated 100% sensitivity and 100% specificity compared with DNA sequencing.
With the growing demand for on-site testing of foodborne pathogens, rapid and sensitive detection methods are urgently needed. Here, we developed a split-crRNA-based CRISPR/Cas12a assay integrated with a lateral flow assay (sCR-LFA) for rapid, sensitive detection of bacterial 16S rRNA within 1 h, without pre-amplific...
MicroRNAs (miRNAs) in blood are promising liquid biopsy biomarkers, yet their short length, low abundance, and high intra-family homology hinder sensitive and specific detection. Combining rolling circle amplification (RCA) with CRISPR-Cas12a enables isothermal detection, but existing methods typically depend on auxili...
Jueun Han, Yejin Song, Uk Ko et al.· Biosensors & bioelectronics· 0 citations
This work presents a broadly applicable one-pot detection strategy termed mutant scaffold-mediated RPA-CRISPR/Cas12a (MS-CRISPR), and introduces rationally designed point mutations into the crRNA scaffold to moderately attenuate Cas12a activation and cleavage kinetics.
Qing-Yang Jiang, Rui-Quan Xu, Zhi-Xin Lin et al.· Proceedings of the National...· 0 citations
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