| Literature DB >> 27355938 |
Katharina Habler1, Oliver Frank2, Michael Rychlik3.
Abstract
Modified mycotoxins have been gaining importance in recent years and present a certain challenge in LC-MS/MS analysis. Due to the previous lack of a labeled isotopologue of the modified mycotoxin deoxynivalenol-3-glucoside, in our study we synthesized the first (13)C-labeled internal standard. Therefore, we used the Königs-Knorr method to synthesize deoxynivalenol-3-β-d-[(13)C₆]-glucoside originated from unlabeled deoxynivalenol and [(13)C₆]-labeled glucose. Using the synthesized isotopically-labeled standard deoxynivalenol-3-β-d-[(13)C₆]-glucoside and the purchased labeled standard [(13)C15]-deoxynivalenol, a stable isotope dilution LC-MS/MS method was firstly developed for deoxynivalenol-3-glucoside and deoxynivalenol in beer. The preparation and purification of beer samples was based on a solid phase extraction. The validation data of the newly developed method gave satisfying results. Intra- and interday precision studies revealed relative standard deviations below 0.5% and 7%, respectively. The recoveries ranged for both analytes between 97% and 112%. The stable isotope dilution assay was applied to various beer samples from four different countries. In summary, deoxynivalenol-3-glucoside and deoxynivalenol mostly appeared together in varying molar ratios but were quantified in rather low contents in the investigated beers.Entities:
Keywords: LC-MS/MS; beer; deoxynivalenol-3-glucoside; labeled standard; modified mycotoxin; stable isotope dilution assay; synthesis
Mesh:
Substances:
Year: 2016 PMID: 27355938 PMCID: PMC6274488 DOI: 10.3390/molecules21070838
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of D3G and DON.
Figure 2LC-MS/MS fragmentation spectra of D3G and [13C6]-D3G.
LC-MS/MS parameter of the stable isotope dilution assay of D3G and DON.
| Analyte | Precursor Ion | Product Ion | Q1 Pre Bias (V) | Q3 Pre Bias (V) | CE (V) |
|---|---|---|---|---|---|
| D3G | 457.3 | 427.2 | 17 | 13 | 16 |
| 247.3 | 22 | 15 | 22 | ||
| [13C6]-D3G | 463.3 | 433.2 | 17 | 13 | 16 |
| 247.3 | 22 | 15 | 22 | ||
| DON | 297.2 | 249.2 | −21 | −18 | −12 |
| 231.2 | −20 | −17 | −12 | ||
| [13C15]-DON | 312.2 | 265.2 | −21 | −18 | −12 |
| 247.2 | −20 | −17 | −12 |
Figure 3LC-MS/MS chromatograms of (a) D3G in negative ESI mode; and (b) DON in positive ESI mode in a naturally-contaminated beer sample with 10.6 μg/L D3G and 20.3 μg/L DON.
Validation data of the stable isotope dilution assay of D3G and DON.
| Analyte | LOD (μg/L) | LOQ (μg/L) | Precision ( | Recoveries (%) at Spiking Levels of | |||
|---|---|---|---|---|---|---|---|
| Intraday | Interday | 10 μg/L | 20 μg/L | 30 μg/L | |||
| D3G | 2.99 | 8.84 | 0.5 | 5 | 112 ± 3 | 110 ± 3 | 105 ± 1 |
| DON | 1.49 | 4.44 | 0.3 | 7 | 97 ± 1 | 107 ± 2 | 108 ± 2 |
Contents of D3G and DON in the analyzed beer samples.
| Beer Type | Country | Alcohol Content (vol %) | D3G (μg/L) | DON (μg/L) | Molar Ratio n(D3G)/n(DON) |
|---|---|---|---|---|---|
| Lager | Germany | 5.4 | - | - | - |
| Wheat beer b | Germany | 5.1 | 10.6 | 20.3 | 0.34 |
| Lager | Taiwan | 5.0 | 15.3 | 6.43 | 1.54 |
| Lager | China | 4.7 | 8.31 a | 5.11 | 1.05 |
| Lager | USA | 5.0 | 20.1 | 14.1 | 0.92 |
| IPA | USA | 6.5 | - | 9.77 | - |
| Triple Golden Ale | USA | 8.0 | 18.1 | 9.40 | 1.25 |
| Porter | USA | 5.3 | - | - | - |
| Belgian Style IPA | USA | 8.3 | 63.3 | 28.3 | 1.45 |
- not detected; a below LOQ; b organic; IPA, Indian Pale Ale.
Figure 4Section of the HMBC NMR spectrum of [13C6]-D3G showing indicating the glycosidic bond of 13C-1′ from [13C6]-glucose to H-3 of DON.