Nanomaterial-enhanced 3D-printed sensor platform for simultaneous detection of atrazine and acetochlor
Publication type: Journal Article
Publication date: 2021-07-01
scimago Q1
wos Q1
SJR: 2.007
CiteScore: 20.9
Impact factor: 10.5
ISSN: 09565663, 18734235
PubMed ID:
33878594
General Medicine
Biophysics
Electrochemistry
Biotechnology
Biomedical Engineering
Abstract
The widespread use of herbicides in agriculture and gardening causes environmental and safety issues such as water pollution. Thus, efficient and convenient analysis of the levels of herbicide residues is of significant importance. Here, we employed 3D-printing to design a multiplex immunosensor for simultaneous detection of two widely used herbicides, atrazine and acetochlor. Multiplexing was achieved through customization of a lateral flow immunoassay, and then integrated with an electrochemical analyzer for ultrasensitive detection. Quantification of herbicide residues was realized through the detection of a novel nanomaterial label, the mesoporous core-shell palladium@platium nanoparticle (Pd@Pt NP), for its outstanding peroxidase-like property. During the electrochemical analysis, the catalytic activity of Pd@Pt NPs on the redox reaction between thionin acetate and hydrogen peroxide provided an electrochemically driven signal that accurately indicated the level of herbicide residues. Using this Nanomaterial-enhanced multiplex electrochemical immunosensing (NEMEIS) system, simultaneous detection of atrazine and acetochlor was realized with a limit of detection of 0.24 ppb and 3.2 ppb, respectively. To further evaluate the feasibility, the optimized NEMEIS was employed for detection in atrazine and acetochlor residue-containing spiked samples, and an overall recovery with 90.8% – 117% range was obtained. The NEMEIS constructed with the aid of 3D-printing provides a rapid, precise, economical, and portable detection device for herbicides, and its success suggests potential broad applications in chemical analysis, biosensors and point-of-care monitoring. • Simultaneous detection of herbicides was achieved based on lateral flow immunoassay(LFIA) and electrochemical detection. • Mesoporous bimetal nanoparticle with superior peroxidase-like activity was synthesized and applied for quantitative analysis. • 3D-printing technique was employed to prototype and fabricate the bi-channel electrochemical LFIA system.
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Total citations:
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Citations from 2025:
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Ruan X. et al. Nanomaterial-enhanced 3D-printed sensor platform for simultaneous detection of atrazine and acetochlor // Biosensors and Bioelectronics. 2021. Vol. 184. p. 113238.
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Ruan X., Wang Y., Kwon E. Y., Limin W., Cheng N., Niu X., Ding S., Van Wie B. J., Lin Y., Du D. Nanomaterial-enhanced 3D-printed sensor platform for simultaneous detection of atrazine and acetochlor // Biosensors and Bioelectronics. 2021. Vol. 184. p. 113238.
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TY - JOUR
DO - 10.1016/j.bios.2021.113238
UR - https://doi.org/10.1016/j.bios.2021.113238
TI - Nanomaterial-enhanced 3D-printed sensor platform for simultaneous detection of atrazine and acetochlor
T2 - Biosensors and Bioelectronics
AU - Ruan, Xiaofan
AU - Wang, Yijia
AU - Kwon, Eunice Y
AU - Limin, Wang
AU - Cheng, Nan
AU - Niu, Xiangheng
AU - Ding, Shichao
AU - Van Wie, Bernard J.
AU - Lin, Yuehe
AU - Du, Dan
PY - 2021
DA - 2021/07/01
PB - Elsevier
SP - 113238
VL - 184
PMID - 33878594
SN - 0956-5663
SN - 1873-4235
ER -
Cite this
BibTex (up to 50 authors)
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@article{2021_Ruan,
author = {Xiaofan Ruan and Yijia Wang and Eunice Y Kwon and Wang Limin and Nan Cheng and Xiangheng Niu and Shichao Ding and Bernard J. Van Wie and Yuehe Lin and Dan Du},
title = {Nanomaterial-enhanced 3D-printed sensor platform for simultaneous detection of atrazine and acetochlor},
journal = {Biosensors and Bioelectronics},
year = {2021},
volume = {184},
publisher = {Elsevier},
month = {jul},
url = {https://doi.org/10.1016/j.bios.2021.113238},
pages = {113238},
doi = {10.1016/j.bios.2021.113238}
}