Research Article

CRISPR-Cas12a-Powered Electrochemical Biosensor for Rapid and Sensitive Detection of Circulating Tumor DNA in Serum

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J Ong Biosci, 2026, 1 (1), 83-88, ISSN

Abstract

Circulating tumor DNA (ctDNA) serves as a pivotal biomarker for non-invasive cancer diagnostics, yet its low physiological concentration in blood serum poses severe analytical challenges. Here, we report a highly sensitive and selective CRISPR-Cas12a-powered electrochemical biosensor designed for the rapid quantification of the EGFR L858R point mutation in human serum without requiring target pre-amplification. The biosensor utilizes a screen-printed gold electrode functionalized with electrochemically deposited gold nanoparticles (AuNPs) and methylene blue (MB)-labeled single-stranded DNA (ssDNA) reporter probes. Upon target ctDNA recognition, the activated Cas12a–crRNA ribonucleoprotein complex exhibits robust trans-cleavage activity, rapidly degrading the surface-immobilized MB-ssDNA reporters. This cleavage induces a sharp reduction in the peak current signal measured via square wave voltammetry (SWV). Under optimized reaction conditions, the assay demonstrated a broad dynamic linear range from 10 aM to 10 pM and an ultra-low limit of detection of 8.5 aM. Furthermore, the platform displayed exceptional single-nucleotide specificity, effectively discriminating target mutant ctDNA from abundant wild-type genomic backgrounds at ratios as low as 0.01%. Validation in spiked human serum specimens yielded recoveries between 95.4% and 104.2% within 35 minutes. Overall, this biosensing strategy successfully bridges the specificity of CRISPR-Cas platforms with the portability of electrochemical detection, offering strong promise for point-of-care liquid biopsy applications.

Keywords electrochemical biosensor liquid biopsy circulating tumor dna crispr-cas12a EGFR L858R mutation
Authors 3

The team behind this paper

3 authors, 3 institutions.

This paper Indian Institute of Science — India Indian Institute of Sci… 1 author National Autonomous University of Mexico — Mexico National Autonomous Uni… 1 author Department of Biosciences and Nutrition — Sweden Department of Bioscienc… 1 author Prof. Ananya Chatterjee — corresponding author AC Prof. Ananya Chatterjee ✉ Dr. Mateo Silva-Reyes MS Dr. Mateo Silva-Reyes Dr. Freja Lindqvist FL Dr. Freja Lindqvist

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Bibliographic Information

Prof. Ananya Chatterjee, Dr. Mateo Silva-Reyes, Dr. Freja Lindqvist, (2026). CRISPR-Cas12a-Powered Electrochemical Biosensor for Rapid and Sensitive Detection of Circulating Tumor DNA in Serum, Journal of Ongoing Biosciences, 1(1): 83-88
Bibtex Citation
@article{prof._ananya_chatterjee2026jobs,
author = {Prof. Ananya Chatterjee and Dr. Mateo Silva-Reyes and Dr. Freja Lindqvist},
title = {CRISPR-Cas12a-Powered Electrochemical Biosensor for Rapid and Sensitive Detection of Circulating Tumor DNA in Serum},
journal = {Journal of Ongoing Biosciences},
year = {2026},
volume = {1},
number = {1},
pages = {83-88},
doi = {},
url = {https://scimatic.org/show_manuscript/9126}
}
APA Citation
Chatterjee, P.A., Silva-Reyes, D.M., Lindqvist, D.F., (2026). CRISPR-Cas12a-Powered Electrochemical Biosensor for Rapid and Sensitive Detection of Circulating Tumor DNA in Serum. Journal of Ongoing Biosciences, 1(1), 83-88. https://doi.org/

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