A DNA tetrahedral nanomaterial-based dual-signal ratiometric electrochemical aptasensor for the detection of ochratoxin A in corn kernel samples
Literature Information
Yu-Long Li, Fa-Ting Xie, Cao Yao, Gui-Qun Zhang, Yan Guan, Yun-Hui Yang, Jian-Mei Yang, Rong Hu
Ochratoxin A (OTA) is a highly toxic food contaminant and is harmful to human beings. Herein, a ratiometric electrochemical aptasensor based on a DNA tetrahedral nanomaterial (NTH) was developed in combination with the signal tag of a zirconium metal–organic framework (UiO-66) for the detection of OTA. In the sensor, UiO-66 and a [Fe(CN)6]3−/4− electrolyte solution were used as the signal probe and the internal reference probe, respectively. In the presence of OTA, the OTA aptamer was released from the electrode due to the specific binding of OTA. Thus, signal probe P1 labeled-UiO-66 was captured on the electrode surface by hybridization with DNA NTH. Since signal probe P1 labeled-UiO-66 was close to the electrode, it leads to an increased signal current of UiO-66 at +0.9 V. As the conductivity of the modified electrode decreased, the current signal of [Fe(CN)6]3−/4− at +0.2 V also decreased. The proposed ratiometric electrochemical aptasensor could effectively eliminate external environmental influences and could avoid electrochemical background signals. The aptasensor demonstrated high specificity for OTA, and achieved a good linear range of 1 pg mL−1–100 ng mL−1 with a detection limit of 330 fg mL−1. The developed electrochemical aptamer biosensor effectively detected OTA in corn kernel samples, verifying its practical application for the determination of OTA in actual samples.
Recommended Journals
Related Literature
The use of process simulation in supercritical fluids applications
Francisco Javier Gutiérrez Ortiz, Andrea Kruse
DOI: 10.1039/C9RE00465C
Microfluidic strategy for rapid and high-quality control of crystal morphology of explosives
Huanming Xia, Hanyu Jiang, Siyu Xu
DOI: 10.1039/D0RE00119H
Continuous flow synthesis of the URAT1 inhibitor lesinurad
Mariana C. F. C. B. Damião, Henrique M. Marçon, Julio Cezar Pastre
DOI: 10.1039/C9RE00483A
Redox initiation of bulk thiol–ene polymerizations
Megan A. Cole, Katherine C. Jankousky
DOI: 10.1039/C2PY20843A
Construction of ‘smart’ surfaces with polymer functionalized silica nanoparticles
Yohei Kotsuchibashi, Ali Faghihnejad, Hongbo Zeng, Ravin Narain
DOI: 10.1039/C2PY20845H
Electrochemical production of syngas from CO2 at pressures up to 30 bar in electrolytes containing ionic liquid
Sofia Messias, Miguel M. Sousa, Manuel Nunes da Ponte, Carmen M. Rangel, Tiago Pardal, Ana S. Reis Machado
DOI: 10.1039/C9RE00271E
Cerium oxide encapsulation by emulsion polymerization using hydrophilic macroRAFT agents
Nancy Zgheib, Jean-Luc Putaux, Antoine Thill, Elodie Bourgeat-Lami, Franck D'Agosto, Muriel Lansalot
DOI: 10.1039/C2PY20548C
You might also like
What is Ethyl 3-cyclohexylpropanoate (CAS: 10094-36-7)?
Ethyl 3-cyclohexylpropanoate is a clear, colorless to light yellow liquid with a...
How should waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl)nicotinic acid (CAS: 34783-31-8) be handled?
Waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl...
How should waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) be handled?
Waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) sho...
What precautions should be taken when handling Chloroac-nle-oh (CAS: 56787-36-1)?
When handling Chloroac-nle-oh (CAS: 56787-36-1), it is essential to wear appropr...
What industries use Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate (CAS: 752244-05-6)?
Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate is primarily used in the...
Are there alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis?
Alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis ...
How should waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) be handled?
Waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) should be managed...
What industries use 1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9)?
1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9) is used in various ...
Are there alternatives to 3-Bromo-5-(N-Boc)aminomethylisoxazole (CAS: 903131-45-3) in synthesis?
There are alternative reagents and compounds that can be used in the synthesis o...
What is Tungsten(IV) oxide (CAS: 12036-22-5)?
Tungsten(IV) oxide, also known as tungsten dioxide, is a chemical compound with ...
Source Journal
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.














![[2',6'-bis(propan-2-yloxy)-[1,1'-biphenyl]-3-yl]dicyclohexylphosphane structure [2',6'-bis(propan-2-yloxy)-[1,1'-biphenyl]-3-yl]dicyclohexylphosphane structure](https://static.chemtradehub.com/structs/787/787618-22-8-dda2.webp)