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Electrochemical biosensor strategy combining DNA entropy-driven technology to activate CRISPR-Cas13a activity and triple-stranded nucleic acids to detect SARS-CoV-2 RdRp gene

Mikrochim Acta. 2023-06; 
Chenyi Zhuo, Zichun Song, Jiuying Cui, Yuanxun Gong, Qianli Tang, Kai Zhang, Xinlei Song, Xianjiu Liao
Products/Services Used Details Operation
Synthetic sgRNA and crRNA Service … RNA products. Upon binding to crRNA, Cas13a’s cleavage activity is activated, cleaving the target RNA sequence and the fluorescent RNA … were purchased from Genscript Biotech (… Get A Quote

摘要

By merging DNA entropy-driven technology with triple-stranded nucleic acids in an electrochemical biosensor to detect the SARS-CoV-2 RdRp gene, we tackled the challenges of false negatives and the high cost of SARS-CoV-2 detection. The approach generates a CRISPR-Cas 13a-activated RNA activator, which then stimulates CRISPR-Cas 13a activity using an entropy-driven mechanism. The activated CRISPR-Cas 13a can cleave Hoogsteen DNA due to the insertion of two uracil (-U-U-) in Hoogsteen DNA. The DNA tetrahedra changed on the electrode surface and can therefore not construct a three-stranded structure after cleaving Hoogsteen DNA. Significantly, this DNA tetrahedron/Hoogsteen DNA-based biosensor can regenerate at... More

关键词

DNA tetrahedra, Electrochemical biosensor, Entropy-driven, SARS-CoV-2