Acid-improved DNAzyme-based chemiluminescence miRNA assay coupled with enzyme-free concatenated DNA circuit.
Biosensing
Chemiluminescence
DNAzyme
G-quadruplex
miRNA
Journal
Biosensors & bioelectronics
ISSN: 1873-4235
Titre abrégé: Biosens Bioelectron
Pays: England
ID NLM: 9001289
Informations de publication
Date de publication:
15 May 2022
15 May 2022
Historique:
received:
29
11
2021
revised:
19
01
2022
accepted:
31
01
2022
pubmed:
22
2
2022
medline:
16
3
2022
entrez:
21
2
2022
Statut:
ppublish
Résumé
DNAzyme-based chemiluminescence assay exhibits excellent performance in bioanalysis but their operation in acid conditions remains challengeable. Herein, we constructed an acid-improved DNAzyme-based isothermal enzyme-free concatenated DNA circuit with significantly reduced background and simultaneously improved signal-to-noise ratio for miRNA detection. The chemiluminescence miRNA assay is composed of catalyzed hairpin assembly (CHA), hybridization chain reaction (HCR), and hemin/G-quadruplex DNAzyme units. The analyte initiates the self-assembly of CHA hairpins into numerous dsDNA, which triggers the subsequent autonomous cross-opening of HCR hairpins to generate long nanowires consisting of the hemin/G-quadruplex DNAzyme. The DNAzyme catalyzes the oxidation of luminol by hydrogen peroxide for the cascaded amplified chemiluminescence signal. The acid-improved property was demonstrated to be closely associated with the low catalytic activity of aggregated hemin under acidic conditions and the remained multiple amplified signal through concatenated DNA circuit. The general DNA circuit exhibited high sensitivity for miRNA-21 detection and chemiluminescence imaging under acidic conditions with a recognition hairpin. The acid-improved DNAzyme-based concatenated DNA circuit is promising to expand the application of chemiluminescence assay and provide a valuable strategy for early diagnosis and prognosis of cancer.
Identifiants
pubmed: 35189467
pii: S0956-5663(22)00100-2
doi: 10.1016/j.bios.2022.114060
pii:
doi:
Substances chimiques
DNA, Catalytic
0
DNA, Concatenated
0
MicroRNAs
0
Hemin
743LRP9S7N
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
114060Informations de copyright
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