Ti 3 C 2 @Bi 2 O 3 nanoaccordion for electrochemical determination of miRNA-21
Based on a dual signal amplification strategy of novel accordion-like Bi O -decorated Ti C (Ti C @Bi O ) nanocomposites and hybridization chain reaction (HCR), an ultra-sensitive electrochemical biosensor was constructed for miRNA-21 detection. By etching Ti AlC with HF, Ti C with an accordion-like...
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Veröffentlicht in: | Mikrochimica acta (1966) 2023-01, Vol.190 (2), p.52 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Based on a dual signal amplification strategy of novel accordion-like Bi
O
-decorated Ti
C
(Ti
C
@Bi
O
) nanocomposites and hybridization chain reaction (HCR), an ultra-sensitive electrochemical biosensor was constructed for miRNA-21 detection. By etching Ti
AlC
with HF, Ti
C
with an accordion-like structure was first obtained and subsequently covered by Bi
O
nanoparticles (NPs), forming Ti
C
@Bi
O
. A layer of Au NPs was electrodeposited on the glassy carbon electrode coated with Ti
C
@Bi
O
, which not only significantly improved the electron transport capacity of the electrode but also greatly increased its surface active area. Upon the immobilization of the thiolated capture probe (SH-CP) on the electrode, the target miRNA-21 specifically hybridized with SH-CP and thus opened its hairpin structure, triggering HCR to form a long double strand with the primers H1 and H2. A large number of the electrochemical indicator molecules were thus embedded inside the long double strands to produce the desirable electrochemical signal at a potential of - 0.19 V (vs. Ag/AgCl). Such dual signal amplification strategy successfully endowed the biosensor with ultra-high sensitivity for miRNA-21 detection in a wide linear range from 1 fM to 100 pM with a detection limit as low as 0.16 fM. The excellent detection of miRNA-21 in human blood plasma displayed a broad prospect in clinical diagnosis. An ultra-sensitive electrochemical biosensor was successfully constructed for miRNA-21 detection in human blood plasma based on the dual signal amplification strategy of novel accordion-like Bi
O
decorated Ti
C
(Ti
C
@Bi
O
) nanocomposites and hybridization chain reaction. |
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ISSN: | 1436-5073 |
DOI: | 10.1007/s00604-022-05624-8 |