| Literature DB >> 31664134 |
Antonio Luque-Muñoz1, Ruben Tapia2, Ali Haidour3, Jose Justicia2, Juan M Cuerva4.
Abstract
In recent years, a large number of biological properties and an important role in the organoleptic characteristics of olive oil have been attributed to phenolic secoiridoids, such as oleacein, oleocanthal, oleuropein aglycone and ligstroside aglycone. Consequently, quantifying them is of great interest for the olive oil sector. Currently, there is no consensus in which analytical method must be use to accurately determine these compounds in olive oil, mainly owing to the lack of reference standards for calibration. In this work, analytical standards of phenolic secoiridoids have been used to develop a quantitative and rapid analytical method by UHPLC-MS/MS, in which sample extraction is not carried out. Simple dilutions of the sample with dry tetrahydrofuran and dry acetonitrile were performed before analysing them. It is worth noting that under these conditions the generation of artefacts such as acetals and hemiacetals of the aldehydic forms is highly reduced. The detection and quantification was performed with a Xevo TQS tandem quadrupole mass spectrometer. The method was validated at four concentration levels and finally applied to six samples of extra virgin olive oil.Entities:
Mesh:
Substances:
Year: 2019 PMID: 31664134 PMCID: PMC6821043 DOI: 10.1038/s41598-019-52060-5
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Structure of compounds 1 to 6.
Figure 2Dilution process of the sample. Va (ml) is aliquot volume and N, dilution factor, is equal to 2/Va.
Optimized MRM conditions and product ions.
| Compound | Transition for quantification Cone (V)/Collision (eV) | Transition for confirmation Cone (V)/Collision (eV) | Reference |
|---|---|---|---|
| Oleacein ( | 319.2 > 195.0 [M-H-C7H8O2]− | 319.2 > 165.0 [M-H-C8H10O3]− |
[ |
| 8/6 | 8/8 | ||
| Oleocanthal ( | 303.2 > 179.0 [M-H-C7H8O2]− | 303.2 > 165.0 [M-H-C8H10O2]− |
[ |
| 12/6 | 12/10 | ||
| Oleuropein aglycone ( | 377.3 > 275.1 [M-H-C4H6O3]− | 377.3 > 307.1 [M-H-C4H6O]− |
[ |
| 8/14 [M-H-C5H10O2]− | 8/10 | ||
| Ligstroside aglycone ( | 361.3 > 291.1 [M-H-C4H6O]− | 361.3> 259.1 [M-H-C4H6O3]− |
[ |
| 36/10 | 36/10 [M-H-C5H10O2]− | ||
| Hydroxytyrosol-d5 ( | 158.0 > 126.0 [M-H-CD2O] | 158.0 > 97.9 |
[ |
| 10/14 | 10/20 |
Figure 3Chromatographic separation using as mobile phase A: water with 0.1% formic acid (A), water with 0.05% ammonium (B) and water wihout additive (C).
Analytical and statistical parameters.
| 3 | 4 | 5 | 6 | |
|---|---|---|---|---|
| n | 28 | 28 | 28 | 28 |
| b | 3.7·10−2 | 5.0·10−3 | 4.0·10−2 | 2.7·10−2 |
| Sb | 7.2·10−4 | 1.1·10−5 | 4.9·10−4 | 5.3·10−4 |
| Sy/x | 1.2·10−2 | 6.2·10−3 | 3.5·10−3 | 9.5·10−3 |
| R2 (%) | 99.5 | 99.4 | 99.6 | 99.1 |
| PDW (%) | 10.1 | 7.2 | 96.0 | 15.3 |
| LOD (ng mL−1) | 1.0 | 4 | 0.3 | 1.0 |
| LOQ (ng mL−1) | 3.3 | 12 | 0.9 | 3.5 |
| LDR (ng mL−1) | 3.3–220 | 12–792 | 0.9–100 | 3.5–208 |
n: points of calibration; b: slope; Sb: slope standard deviation; Sy/x: regression standard deviation; R2: determination coefficient; %PDW: %P value of Durbin–Watson statistic; LOD: limit of detection; LOQ: limit of quantification; LDR: linear dynamic range.
Matrix effect and accuracy of the analytical method.
| aSpiked (ng mL−1) | bRE (%) | cRSD (%) | dME (%) | |
|---|---|---|---|---|
|
| 6.9 | 6.7 | 2.1 | 13.7 |
| 27.6 | 10.0 | 2.2 | 3.7 | |
| 165.6 | 4.6 | 0.8 | 6.4 | |
| 220.8 | 4.0 | 2.4 | — | |
|
| 24.75 | 6.1 | 8.5 | 8.6 |
| 99 | 1.5 | 2.9 | 1.1 | |
| 594 | 6.3 | 2.5 | 14.1 | |
| 792 | 4.1 | 3.8 | — | |
|
| 3.125 | 7.4 | 3.7 | 4.2 |
| 12.5 | 7.7 | 1.5 | 7.3 | |
| 75 | 4.7 | 1.2 | 10.6 | |
| 100 | 2.1 | 3.5 | — | |
|
| 6.5 | 9.8 | 3.9 | 15.8 |
| 26 | 1.5 | 3.8 | 8.8 | |
| 156 | 10.5 | 1.8 | 1.4 | |
| 208 | 1.9 | 4.2 | — |
aConcentration in the chromatography vial.
bR (%): recovery (mean of ten determinations).
cRSD (%): relative standard deviation (mean of ten determinations).
dME (%): matrix effect (mean of four determinations).
Method application to commercial EVOO samples.
| O1 | O2 | O3 | O4 | O5 | O6 | |
|---|---|---|---|---|---|---|
|
| ||||||
|
| 104 (7) | 225 (15) | 69 (2) | 92 (5) | 120 (10) | 115 (5) |
|
| 118 (8) | 160 (10) | 180 (7) | 115 (9) | 99 (4) | 104 (6) |
|
| 270 (20) | 69 (6) | 38 (2) | 141 (8) | 300 (25) | 200 (15) |
|
| 515 (20) | 71 (6) | 108 (8) | 255 (20) | 445 (25) | 295 (20) |
aMean of four determination; SD: standard deviation.
Figure 4Chromatograms of the sample O3 (A) and ACN after several sample injections (B).