Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets
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2-DTech, Core Technology Facility, 46 Grafton Street, Manchester M13 9NT, United Kingdom
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Publication type: Journal Article
Publication date: 2018-09-10
scimago Q1
wos Q2
SJR: 0.894
CiteScore: 9.0
Impact factor: 4.7
ISSN: 25766422
PubMed ID:
34996159
General Chemistry
Biomaterials
Biomedical Engineering
Biochemistry (medical)
Abstract
Here a new chronocoulometric sensor, based on semiconducting 2H MoS2 nanosheets decorated with a controlled density of monodispersed small gold nanoparticles, was fabricated via electrodeposition, for the highly sensitive detection of miRNA-21. The size and interparticle spacing of AuNPs was optimized by controlling nucleation and growth rates through tuning of deposition-potential and Au-precursor concentration and by getting simultaneous feedback from morphological and electrochemical activity studies. The sensing strategy, involved the selective immobilization of thiolated capture probe DNA (CP) at AuNPs and hybridization of CP to a part of miRNA target, whereas the remaining part of the target was complementary to a signaling non-labelled DNA sequence. Chronocoulometry provided precise quantification of nucleic acids at each step of the sensor assay by interrogating [Ru(NH3)6]3+ electrostatically bound to phosphate backbones of oligonucleotides. A detailed and systematic optimization study demonstrated that the thinnest and smallest MoS2 NSs improved the sensitivity of the AuNP@MoS2 sensor achieving an impressive detection limit of 100 aM, which is 2 orders of magnitude lower than that of bare Au electrode and also enhanced the DNA-miRNA hybridization efficiency by 25%. Such improved performance can be attributed to the controlled packing density of CPs achieved by their self -assembly on AuNPs, large interparticle density, small size and the intimate coupling between AuNPs and MoS2. Alongside the outstanding sensitivity, the sensor exhibited excellent selectivity down to femtomolar concentrations, for discriminating complementary miRNA-21 target in a complex system composed of different foreign targets including mismatched and non-complementary miRNA-155. These advantages make our sensor a promising contender in the point of care miRNA sensor family for medical diagnostics.
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Total citations:
36
Citations from 2024:
5
(13.89%)
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Ganguly A., Benson J., Papakonstantinou P. Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets // ACS Applied Bio Materials. 2018. Vol. 1. No. 4. pp. 1184-1194.
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Ganguly A., Benson J., Papakonstantinou P. Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets // ACS Applied Bio Materials. 2018. Vol. 1. No. 4. pp. 1184-1194.
Cite this
RIS
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TY - JOUR
DO - 10.1021/acsabm.8b00398
UR - https://doi.org/10.1021/acsabm.8b00398
TI - Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets
T2 - ACS Applied Bio Materials
AU - Ganguly, Abhijit
AU - Benson, John
AU - Papakonstantinou, P.
PY - 2018
DA - 2018/09/10
PB - American Chemical Society (ACS)
SP - 1184-1194
IS - 4
VL - 1
PMID - 34996159
SN - 2576-6422
ER -
Cite this
BibTex (up to 50 authors)
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@article{2018_Ganguly,
author = {Abhijit Ganguly and John Benson and P. Papakonstantinou},
title = {Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets},
journal = {ACS Applied Bio Materials},
year = {2018},
volume = {1},
publisher = {American Chemical Society (ACS)},
month = {sep},
url = {https://doi.org/10.1021/acsabm.8b00398},
number = {4},
pages = {1184--1194},
doi = {10.1021/acsabm.8b00398}
}
Cite this
MLA
Copy
Ganguly, Abhijit, et al. “Sensitive Chronocoulometric Detection of miRNA at Screen-Printed Electrodes Modified by Gold-Decorated MoS2 Nanosheets.” ACS Applied Bio Materials, vol. 1, no. 4, Sep. 2018, pp. 1184-1194. https://doi.org/10.1021/acsabm.8b00398.