A photoelectrochemical biosensor based on b-TiO2/CdS:Eu/Ti3C2 heterojunction for the ultrasensitive detection of miRNA-21

被引:15
|
作者
Liu, Shen-Ting [1 ]
Chen, Jing-Shuai [1 ]
Liu, Xing-Pei [1 ]
Mao, Chang-Jie [1 ]
Jin, Bao-Kang [1 ]
机构
[1] Anhui Univ, Key Lab Struct & Funct Regulat Hydrid Mat,Sch Che, Minist Educ,Key Lab Funct Inorgan Mat Anhui Prov, Key Lab Chem Inorgan Organ Hybrid Functionalized, Hefei 230601, Peoples R China
基金
中国国家自然科学基金;
关键词
b-TiO2/CdS:Eu/Ti3C2 heterojunction; Photoelectrochemical biosensor; miRNA-21; Strand-displacement reaction; QUANTUM DOTS; AMPLIFICATION; CONSTRUCTION; PERFORMANCE; NANOWIRES; PLATFORM;
D O I
10.1016/j.talanta.2022.123601
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel photoelectrochemical (PEC) biosensor based on b-TiO2/CdS:Eu/Ti3C2 heterojunction was developed for ultrasensitive determination of miRNA-21. In this device, the b-TiO2/CdS:Eu/Ti3C2 heterojunction with excellent energy level arrangement effectively facilitated photoelectric conversion efficiency and accelerated the separation of the photogenerated electron hole pairs, which because that the structure of heterojunction overcomes the drawbacks of single material, such as narrow light absorption range, wide band gap, short carrier lifetime, etc., improves light utilization, extends the lifetime of photogenerated electron hole pairs, and promotes electron transfer. Herein, hairpin DNA1 (H1) decorated on the b-TiO2/CdS:Eu/Ti3C2 electrode surface by Cd-S bonds, after H-2/miRNA-21 heterduplex was introduced, the strand-displacement reaction (SDR) was triggered between H-1 and H-2/miRNA-21, accordingly, miRNA-21 was discharged from the H-2/miRNA-21 heterduplex, forming the H1/H2 duplex, and the reuse of miRNA-21 was realized. As a signal amplification factor, the signal amplification factor H-3-CdSe was hybridized with H-1/H-2 duplex, which greatly enhanced the sensitivity of the PEC biosensor. Under optimal conditions, the designed PEC biosensor displayed outstanding sensitivity, selectivity and stability with a wide liner range from 1.0 mu M to 10.0 fM and a low detection limit of 3.3 fM. The preparation of the optoelectronic material affords a new direction for the progress of heterojunction photovoltaic materials and the construction of the proposed biosensor also provides a new thought for the PEC detection of human miRNA-21 with superior performance. Simultaneously, the established biosensor exhibiting tremendous possibility for detecting other biomarkers and biomolecules in clinical diagnosis fields.
引用
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页数:8
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