Construction of the 0D/2D heterojunction of Ti3C2Tx MXene nanosheets and iron phthalocyanine quantum dots for the impedimetric aptasensing of microRNA-155

被引:78
作者
Duan, Fenghe [1 ,2 ]
Guo, Chuanpan [1 ,2 ]
Hu, Mengyao [1 ]
Song, Yingpan [1 ]
Wang, Minghua [1 ]
He, Linghao [1 ]
Zhang, Zhihong [1 ]
Pettinari, Riccardo [2 ]
Zhou, Liming [1 ]
机构
[1] Zhengzhou Univ Light Ind, Henan Prov Key Lab Surface & Interface Sci, Zhengzhou 450002, Peoples R China
[2] Univ Camerino, Chem & Pharmaceut Sci & Biotechnol Chem Sci, Via S Agostino 1, I-62032 Camerino, MC, Italy
基金
中国国家自然科学基金;
关键词
Ti3C2Tx MXene nanosheets; Iron phthalocyanine; Nanohybrid; Electrochemical aptasensor; Detection of miRNA-155; Impedimetric aptasensing; ULTRASENSITIVE ELECTROCHEMICAL DETECTION; RAMAN-SPECTROSCOPY PLATFORM; FIELD-EFFECT TRANSISTOR; SIGNAL AMPLIFICATION; SILVER NANOPARTICLES; ZINC PHTHALOCYANINE; COPPER NANOCLUSTERS; ORGANIC FRAMEWORKS; BIOSENSOR; PERFORMANCE;
D O I
10.1016/j.snb.2020.127844
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A promising nanocarrier of the complementary DNA (cDNA) toward miRNA-155 was synthesized on the basis of the nanohybrid type of Ti3C2Tx MXene nanosheets decorated using iron phthalocyanine quantum dots (FePc QDs) (denoted as Ti3C2Tx@FePcQDs) to construct a novel ultrasensitive impedimetric aptasensing system for microRNA-155 (miRNA-155). Owing to pi-pi* stacking interaction between Ti3C2Tx nanosheets and FePc QDs, the homogeneous nanostructure of the Ti3C2Tx@FePcQD nanohybrid that comprises mixed-valence states (Ti2+/Ti-3(+) and Fe2+/Fe3+), multicomponent (Ti-O and Ti-C), and various N-related groups was achieved. The constructed Ti3C2Tx@FePcQDs-based aptasensor displayed an ultrahigh sensitivity for detecting miRNA-155 with a low detection limit of 4.3 aM (S/N = 3) within the miRNA-155 concentration ranging from 0.01 fM to 10 pM. Compared with the individual component-based aptasensors and other reported miRNA-155 aptasensors, the proposed impedimetric aptasensing system exhibited substantial merits of a feasible preparation process, nonuse of labels or electrochemical indicators, fast response time, and comprehensive sensing performances for detecting miRNA-155. This strategy for determining miRNAs can extensively be applied as the platform for anchoring other kinds of aptamers in detecting diverse targets, thus indicating its great potential application for the early diagnosis of cancer biomarkers.
引用
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页数:11
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共 72 条
[1]   Mimetic biosensors composed by layer-by-layer films of phospholipid, phthalocyanine and silver nanoparticles to polyphenol detection [J].
Alessio, Priscila ;
Martin, Cibely S. ;
de Saja, Jose A. ;
Rodriguez-Mendez, Maria L. .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 233 :654-666
[2]   Metal complexes with the zwitterion 4-(trimethylammonio) benzenethiolate: Synthesis, structures and applications [J].
Bao, Shu-Jin ;
Liu, Chun-Yu ;
Zhang, Min ;
Chen, Xu-Ran ;
Yu, Hong ;
Li, Hong-Xi ;
Braunstein, Pierre ;
Lang, Jian-Ping .
COORDINATION CHEMISTRY REVIEWS, 2019, 397 :28-53
[3]   Facile synthesis of Au@α-Fe2O3@RGO ternary nanocomposites for enhanced electrochemical sensing of caffeic acid toward biomedical applications [J].
Bharath, G. ;
Alhseinat, Emad ;
Madhu, Rajesh ;
Mugo, Samuel M. ;
Alwasel, Saleh ;
Harrath, Abdel Halim .
JOURNAL OF ALLOYS AND COMPOUNDS, 2018, 750 :819-827
[4]   Label-free fluorescent detection of microRNA-155 based on synthesis of hairpin DNA-templated copper nanoclusters by etching (top-down approach) [J].
Borghei, Yasaman-Sadat ;
Hosseini, Morteza ;
Ganjali, Mohammad Reza ;
Hosseinkhani, Saman .
SENSORS AND ACTUATORS B-CHEMICAL, 2017, 248 :133-139
[5]   Construction and amperometric biosensing performance of a novel platform containing carbon nanotubes-zinc phthalocyanine and a conducting polymer [J].
Buber, Ece ;
Yuzer, Abdulcelil ;
Soylemez, Saniye ;
Kesik, Melis ;
Ince, Mine ;
Toppare, Levent .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2017, 96 :61-69
[6]   Novel and simple electrochemical biosensor monitoring attomolar levels of miRNA-155 in breast cancer [J].
Cardoso, Ana R. ;
Moreira, Felismina T. C. ;
Fernandes, Ruben ;
Sales, M. Goreti F. .
BIOSENSORS & BIOELECTRONICS, 2016, 80 :621-630
[7]   Impedimetric detection of miRNA-34a using graphene oxide modified chemically activated graphite electrodes [J].
Congur, Gulsah ;
Eksin, Ece ;
Erdema, Arzum .
SENSORS AND ACTUATORS A-PHYSICAL, 2018, 279 :493-500
[8]   Quantum dots-labeled strip biosensor for rapid and sensitive detection of microRNA based on target-recycled nonenzymatic amplification strategy [J].
Deng, Huaping ;
Liu, Qianwen ;
Wang, Xin ;
Huang, Ru ;
Liu, Hongxing ;
Lin, Qiumei ;
Zhou, Xiaoming ;
Xing, Da .
BIOSENSORS & BIOELECTRONICS, 2017, 87 :931-940
[9]   MicroRNA 155 and viral-induced neuroinflammation [J].
Dickey, Laura L. ;
Hanley, Timothy M. ;
Huffaker, Thomas B. ;
Ramstead, Andrew G. ;
O'Connell, Ryan M. ;
Lane, Thomas E. .
JOURNAL OF NEUROIMMUNOLOGY, 2017, 308 :17-24
[10]   Folic acid-functionalized zirconium metal-organic frameworks based electrochemical impedance biosensor for the cancer cell detection [J].
Du, Liping ;
Chen, Wei ;
Wang, Jian ;
Cai, Wen ;
Kong, Shu ;
Wu, Chunsheng .
SENSORS AND ACTUATORS B-CHEMICAL, 2019, 301