Literature DB >> 27664413

Quantum dots-labeled strip biosensor for rapid and sensitive detection of microRNA based on target-recycled nonenzymatic amplification strategy.

Huaping Deng1, Qianwen Liu2, Xin Wang2, Ru Huang1, Hongxing Liu1, Qiumei Lin1, Xiaoming Zhou3, Da Xing4.   

Abstract

MicroRNAs (miRNAs) have been proved to be potential biomarkers in early cancer diagnosis. It is of great significance for rapid and sensitive detection of miRNAs, particularly with point-of-care (POC) diagnosis. Herein, it is the first time to construct quantum dots (QDs)-labeled strip biosensor based on target-recycled nonenzymatic amplification strategy for miRNA detection. In the system, QDs were served as bright, photostable signal labels, which endow this biosensor with good detection efficiency. Moreover, a target-recycled amplification strategy relies on sequence-specific hairpins strand displacement process without the assistance of enzymes, was introduced to further improve the sensitivity. Meanwhile eliminating the requirement of environment-susceptible enzyme protein makes it easy to preserve and enhances the stability and reproducibility of this sensor. Benefiting from these outstanding characteristics, this platform exhibited a good detection sensitivity range from 2fmol to 200fmol with a limit of 200amol, using only 20μL of sample within 80min. The assay was also 10-fold more sensitive than that with a conventional colloidal gold-based test strip for miRNA detection. Additionally, the analysis of miRNA in various tumor cell extracts was in accordance with the performance of quantitative realtime polymerase chain reaction (qRT-PCR). Clinical tumor samples were also tested, and 16 of 20 samples gave out positive signals, which demonstrated the practical application capacity of the biosensor. Therefore, the proposed biosensor holds great promise for potential POC applications and early cancer diagnosis. Copyright Â
© 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  MicroRNA detection; Nonenzymatic amplification; Quantum dots; Strip biosensor

Mesh:

Substances:

Year:  2016        PMID: 27664413     DOI: 10.1016/j.bios.2016.09.043

Source DB:  PubMed          Journal:  Biosens Bioelectron        ISSN: 0956-5663            Impact factor:   10.618


  11 in total

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Review 2.  Nanomaterials for Healthcare Biosensing Applications.

Authors:  Muqsit Pirzada; Zeynep Altintas
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3.  Ratiometric enhanced fluorometric determination and imaging of intracellular microRNA-155 by using carbon dots, gold nanoparticles and rhodamine B for signal amplification.

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Journal:  Mikrochim Acta       Date:  2019-06-25       Impact factor: 5.833

4.  Elucidating the mechanism of miRNA-214 in the regulation of gingival carcinoma.

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Journal:  Exp Ther Med       Date:  2017-03-24       Impact factor: 2.447

5.  Utilization of chromogenic enzyme substrates for signal amplification in multiplexed detection of biomolecules using surface mass spectrometry.

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6.  Duplex-Specific Nuclease-Amplified Detection of MicroRNA Using Compact Quantum Dot-DNA Conjugates.

Authors:  Ye Wang; Philip D Howes; Eunjung Kim; Christopher D Spicer; Michael R Thomas; Yiyang Lin; Spencer W Crowder; Isaac J Pence; Molly M Stevens
Journal:  ACS Appl Mater Interfaces       Date:  2018-08-16       Impact factor: 9.229

7.  A Polydopamine-Coated Gold Nanoparticles Quenching Quantum Dots-Based Dual-Readout Lateral Flow Immunoassay for Sensitive Detection of Carbendazim in Agriproducts.

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Journal:  Biosensors (Basel)       Date:  2022-01-29

Review 8.  Therapeutic Applications of Functional Nanomaterials for Prostatitis.

Authors:  Chun-Ping Liu; Zi-De Chen; Zi-Yan Ye; Dong-Yue He; Yue Dang; Zhe-Wei Li; Lei Wang; Miao Ren; Zhi-Jin Fan; Hong-Xing Liu
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Review 9.  Optical Biosensors for the Detection of Rheumatoid Arthritis (RA) Biomarkers: A Comprehensive Review.

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10.  Highly sensitive and portable mRNA detection platform for early cancer detection.

Authors:  Hongxia Li; Antony R Warden; Wenqiong Su; Jie He; Xiao Zhi; Kan Wang; Laikuan Zhu; Guangxia Shen; Xianting Ding
Journal:  J Nanobiotechnology       Date:  2021-09-26       Impact factor: 10.435

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