| Literature DB >> 30650140 |
Ismail I Althagafi1, Saleh A Ahmed1,2, Waleed A El-Said2.
Abstract
Aflatoxins (AFs) are a family of fungal toxins that produced in food and feed by two Aspergillus species (Aspergillus flavus and Aspergillus parasiticus). Several techniques have been reported for AFs detection including high-pressure liquid chromatography, enzyme-linked immunosorbent assay, surface plasmon resonance and recombinant immune blotting assay. But, these methods are disadvantaged because they consumed a long time for analysis; in addition, they required a piece of complicated and expensive equipment. Therefore, developing of inexpensive sensors with high selectivity and sensitivity for detecting of AFs levels without extensive sample preparation has received great attention. Several electrochemical AFs sensors have been reported; however, there is still a need for developing a new, simple and rapid electrochemical AFs sensor. Here, we have developed a new AFs sensor based on Au nanostructures/graphene nanosheets modified ITO substrate that could enhance the Raman effect and the electrochemical conductivity. The modified electrode was prepared based on layer-by-layer electrochemical deposition method. AFs antibody was immobilized onto the Au nanostructures/graphene nanosheets; then it was used as a probe for rapid, simple and cheap detection of AFs level using Raman spectroscopy and electrochemical techniques. Our results demonstrated that the developed system showed a simple, easy and sensitive sensor for monitoring low concentrations of AFB1 with a detection limit of about 6.9 pg/mL, also it allowed the determination of AFB1 in spiked food samples.Entities:
Mesh:
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Year: 2019 PMID: 30650140 PMCID: PMC6334944 DOI: 10.1371/journal.pone.0210652
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
SERS spectral assignments for AFB1.
| Raman shift (cm−1) | band assignments |
|---|---|
| 609 | Ring deformation |
| 675 | C−H in-plane bending |
| 759.5 | C−H out-of-plane bending |
| 827 | ring deformation |
| 935 | ring breathe, Str. (C−O) |
| 1003 | Ring deformation |
| 1038 | Str. (CH2−CH2), β(C-H) ring, β(C-H)-(CH3) |
| 1075.5 | Str. (C−C−C) ring deformation |
| 1099 | Str. C–O–CH3 ring deformation |
| 1139 | Str. (C−O−CH2) (cyclopentene ring) |
| 1184 | Out-of-plane bending (C−H) (ring) |
| 1232 | In-plane bending (C−H) ring deformation; Str. C−O−C; Str. C−O−C(H3) |
| 1320 | Asymmetrical (C−H2) (ring) (C−H) |
| 1350 | Out-of-plane bending CH3 |
| 1391 | Str. CH3 |
| 1426.5 | In-plane bending (C−H) (CH3), In-plane bending (C−H) (ring) |
| 1461 | Str. (C = C), ring deformation |
| 1551 | Str. (C−C) and ring deformation |
| 1794 | C = O (2H-pyrane ring) |
Comparison of the limit of detection of the developed sensor with other electrochemical sensors reported in the literatures.
| No | Type of electrode | LOD | Reference |
|---|---|---|---|
| anti-aflatoxin antibodies/gold/quartz crystal | 0.012 ng/mL | [ | |
| AFB1antibody/ polyaniline modified Pt | 100ng/mL | [ | |
| polythionine/Au NPs-modified glassy carbon electrode | 0.07 ng/mL | [ | |
| signal-amplified electrode | 0.06 ng/mL | [ | |
| acetyl cholinesterase | 0.05 μg/ml | [ | |
| Au nanorods | 0.16 ng/mL | [ | |
| GC/polyNeutral Red/ Polycarboxylated thiacalix[ | 0.03 ng/mL | [ | |
| GO-Au | 0.23 ng/mL | [ | |
| Aptamer and DNA probes | 0.1 ng/ml | [ | |
| Chemiluminescence competitive aptamer | 0.11 ng/mL | [ | |
| reduced graphene oxide polypyrrole nanocomposite | 10 pg/mL | [ | |
| anti-aflatoxin antibody on gold electrode | 0.5 ng/mL | [ | |
| PEDOT/Au-NPs/ITO | 4.5 pg/mL | [ | |
| anti-aflatoxin antibody/Au/rGO/ITO | 6.9 pg/mL | this work |
Recovery percentage of different concentrations of spiked AFB1.
| No | Spiked (ng/mL) | Found (ng/mL) | Recovery % |
|---|---|---|---|