| Literature DB >> 22293971 |
Elisabeth Varga1, Thomas Glauner, Robert Köppen, Katharina Mayer, Michael Sulyok, Rainer Schuhmacher, Rudolf Krska, Franz Berthiller.
Abstract
A fast, easy-to-handle and cost-effective analytical method for 11 mycotoxins currently regulated in maize and other cereal-based food products in Europe was developed and validated for maize. The method is based on two extraction steps using different acidified acetonitrile–water mixtures. Separation is achieved using ultrahigh-performance liquid chromatography (UHPLC) by a linear water–methanol gradient. After electrospray ionisation, tandem mass spectrometric detection is performed in dynamic multiple reaction monitoring mode. Since accurate mass spectrometric quantification is hampered by matrix effects, uniformly [(13)C]-labelled mycotoxins for each of the 11 compounds were added to the sample extracts prior to UHPLC-MS/MS analysis. Method performance parameters were obtained by spiking blank maize samples with mycotoxins before as well as after extraction on six levels in triplicates. The twofold extraction led to total recoveries of the extraction steps between 97% and 111% for all target analytes, including fumonisins. The [(13)C]-labelled internal standards efficiently compensated all matrix effects in electrospray ionisation, leading to apparent recoveries between 88% and 105% with reasonable additional costs. The relative standard deviations of the whole method were between 4% and 11% for all analytes. The trueness of the method was verified by the measurement of several maize test materials with well-characterized concentrations. In conclusion, the developed method is capable of determining all regulated mycotoxins in maize and presuming similar matrix effects and extraction recovery also in other cereal-based foods.Entities:
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Year: 2012 PMID: 22293971 PMCID: PMC3292730 DOI: 10.1007/s00216-012-5757-5
Source DB: PubMed Journal: Anal Bioanal Chem ISSN: 1618-2642 Impact factor: 4.142
Method performance parameters determined in maize
| LOD (μg kg−1) | LOQ (μg kg−1) | Eval. conc. range (μg kg−1) |
|
| SSE int.c, |
| |
|---|---|---|---|---|---|---|---|
| AFB1 | 0.04 | 0.1 | 0.5–150 | 35 ± 5 | 105 ± 6 | 97 ± 4 | 108 ± 7 |
| AFB2 | 0.04 | 0.1 | 0.5–150 | 45 ± 5 | 100 ± 4 | 93 ± 4 | 107 ± 6 |
| AFG1 | 0.02 | 0.1 | 0.5–150 | 50 ± 4 | 101 ± 5 | 92 ± 4 | 109 ± 6 |
| AFG2 | 0.1 | 0.4 | 0.5–150 | 43 ± 8 | 101 ± 8 | 91 ± 4 | 111 ± 9 |
| DON | 3.4 | 11 | 15–1,500 | 49 ± 6 | 96 ± 5 | 91 ± 4 | 106 ± 6 |
| FB1 | 1.4 | 4.3 | 5–498 | 356 ± 10 | 101 ± 10 | 98 ± 9 | 103 ± 13 |
| FB2 | 1.3 | 3.9 | 5–501 | 180 ± 8 | 88 ± 7 | 90 ± 7 | 97 ± 10 |
| HT-2 | 0.8 | 2.5 | 4–1,340 | 148 ± 7 | 98 ± 7 | 90 ± 4 | 109 ± 7 |
| OTA | 0.1 | 0.4 | 0.5–153 | 168 ± 11 | 93 ± 7 | 91 ± 10 | 102 ± 12 |
| T-2 | 0.1 | 0.2 | 0.5–151 | 127 ± 5 | 99 ± 6 | 90 ± 6 | 110 ± 8 |
| ZEN | 1.2 | 2.9 | 5–504 | 89 ± 10 | 103 ± 11 | 94 ± 12 | 109 ± 15 |
aApparent recovery using external calibration
bApparent recovery using internal calibration
cMean value for the signal suppression or enhancement
dExtraction recovery
List of analytes together with optimized ESI-MS and ESI-MS/MS parameters
| Analyte | RT (min) |
| Cell acc. (V) |
| Relative response ratiob |
|---|---|---|---|---|---|
| Aflatoxin B1 | 4.42 | 313.1 [M+H]+ | 3 | 241.0 (41), 285.0 (21) | 84 |
| [13C17]-aflatoxin B1 | 4.42 | 330.1 [M+H]+ | 3 | 301.1 (21) | |
| Aflatoxin B2 | 4.17 | 315.1 [M+H]+ | 3 | 258.9 (29), 287.0 (21) | 75 |
| [13C17]-aflatoxin B2 | 4.17 | 332.2 [M+H]+ | 3 | 303.0 (21) | |
| Aflatoxin G1 | 3.87 | 329.1 [M+H]+ | 3 | 243.0 (25), 200.1 (41) | 67 |
| [13C17]-aflatoxin G1 | 3.87 | 346.1 [M+H]+ | 5 | 212.2 (41) | |
| Aflatoxin G2 | 3.59 | 331.1 [M+H]+ | 3 | 313.0 (21), 245.1 (25) | 65 |
| [13C17]-aflatoxin G2 | 3.59 | 348.1 [M+H]+ | 5 | 259.1 (25) | |
| Deoxynivalenol | 1.45 | 297.1 [M+H]+ | 3 | 249.0 (4), 203.0 (12) | 65 |
| [13C15]-deoxynivalenol | 1.45 | 312.2 [M+H]+ | 3 | 263.1 (4) | |
| Fumonisin B1 | 5.55 | 722.4 [M+H]+ | 3 | 352.4 (37), 334.4 (37) | 87 |
| [13C34]-fumonisin B1 | 5.55 | 756.5 [M+H]+ | 3 | 374.4 (37) | |
| Fumonisin B2 | 6.46 | 706.4 [M+H]+ | 3 | 336.4 (41), 318.3 (41) | 57 |
| [13C34]-fumonisin B2 | 6.46 | 740.5 [M+H]+ | 3 | 358.3 (41) | |
| HT-2 toxin | 5.40 | 442.2 [M+NH4]+ | 3 | 263.0 (9), 215.0 (13) | 84 |
| [13C22]-HT-2 toxin | 5.40 | 464.3 [M+NH4]+ | 3 | 278.1 (9) | |
| Ochratoxin A | 6.43 | 404.1 [M+H]+ | 3 | 238.9 (25), 102.1 (70) | 40 |
| [13C20]-ochratoxin A | 6.43 | 424.2 [M+H]+ | 3 | 250.1 (25) | |
| T-2 toxin | 5.96 | 484.3 [M+NH4]+ | 5 | 215.1 (9), 305.0 (8) | 81 |
| [13C24]-T-2 toxin | 5.96 | 508.3 [M+NH4]+ | 5 | 322.1 (8) | |
| Zearalenone | 6.44 | 317.1 [M-H]− | 7 | 130.9 (29), 272.9 (17) | 69 |
| [13C18]-zearalenone | 6.44 | 335.2 [M-H]− | 7 | 290.0 (17) |
RT retention time, Cell acc. cell acceleration voltage
aValues are given in the order quantifier ion, qualifier ion (in parentheses are the corresponding collision energy (CE) settings in volts)
bDefined as the peak area of qualifier in per cent of the quantifier
Fig. 1Extracted ion chromatogram of a blank maize sample spiked before extraction with unlabelled mycotoxins at a medium level (AFB1, AFB2, AFG1, AFG2, 15.0 μg kg−1; T-2, 15.1 μg kg−1; OTA, 15.3 μg kg−1; FB1, 49.8 μg kg−1; FB2, 50.1 μg kg−1; ZEN, 50.4 μg kg−1; HT-2, 134.4 μg kg−1; DON, 150.2 μg kg−1). Each analyte is displayed in a different colour. The dotted lines show the mass transitions of the internal standards, whilst the full lines indicate the quantifier and qualifier transitions
Fig. 2Extracted ion chromatogram of AFB1 and OTA of a blank maize sample spiked with 0.45 μg kg−1 before extraction and the corresponding signal-to-noise values for the two mass transitions
List of measured test materials together with assigned values and variation
| No. | Analyte | Assigned valuea ± SD (μg kg−1) | Measured valueb ± SD (μg kg−1) | Statusc |
|---|---|---|---|---|
| TM_01 | ZEN | 83 ± 4.5 | 86 ± 10 | ok |
| TM_02 | Sum AFs | 3.79 ± 1.67 | 4.6 ± 0.2 | ok |
| AFB1 | 1.87 ± 0.83 | 2.3 ± 0.1 | ok | |
| AFB2 | 0.51 ± 0.23 | 0.6 ± 0.03 | ok | |
| AFG1 | 0.96 ± 0.43 | 1.0 ± 0.1 | ok | |
| AFG2 | 0.52 ± 0.23 | 0.7 ± 0.1 | ok | |
| TM_03 | FB1 | 1,650 ± 53 | 1,960 ± 198 | + |
| FB2 | 461 ± 16 | 496 ± 32 | ok | |
| TM_04 | DON | 1,714 ± 64 | 1,660 ± 145 | ok |
| TM_05 | DON | 901 ± 55 | 908 ± 79 | ok |
| ZEN | 79 ± 13 | 84 ± 10 | ok | |
| TM_06 | FB1 | 2,630 ± 370 | 2,300 ± 233 | ok |
| FB2 | 690 ± 170 | 578 ± 38 | ok | |
| TM_07 | FB1 | 270 ± 55 | 223 ± 23 | ok |
| FB2 | <80 | 55 ± 4 | ok | |
| TM_08 | Sum AFs | 16.32 ± 2.03 | 13.3 ± 0.8 | − |
| AFB1 | 15.47 ± 1.97 | 12.5 ± 0.8 | − | |
| AFB2 | 0.85 ± 0.17 | 0.6 ± 0.03 | − | |
| AFG1 | <0.1 | 0.2 ± 0.01 | + | |
| AFG2 | <0.1 | <LOD | ok | |
| TM_09 | Sum AFs | 8.9 ± 0.13d | 8.3 ± 0.4 | − |
| AFB1 | 7.4 ± 0.19 | 7.4 ± 0.4 | ok | |
| AFB2 | 0.7 ± 0.04 | 0.5 ± 0.2 | ok | |
| AFG1 | <0.1 | 0.4 ± 0.2 | + | |
| AFG2 | <0.1 | <LOD | ok | |
| TM_10 | Sum FB1 + FB2 | 534 ± 33 | 598 ± 50 | ok |
| FB1 | 442 ± 27 | 490 ± 50 | ok | |
| FB2 | 91 ± 6 | 108 ± 7 | + | |
| TM_11 | Sum FB1 + FB2 | 1,194 ± 62 | 1,180 ± 99 | ok |
| FB1 | 987 ± 54 | 967 ± 98 | ok | |
| FB2 | 197 ± 10 | 212 ± 14 | ok | |
| TM_12 | Sum FB1 + FB2 | 1954 ± 126 | 2,140 ± 183 | ok |
| FB1 | 1,626 ± 108 | 1,800 ± 182 | ok | |
| FB2 | 328 ± 22 | 343 ± 22 | ok |
aAssigned values and standard deviations (SDs) according to the material provider. If the standard deviation (or individual measurement results) was not given, the expanded uncertainty was divided by 2 to calculate the standard uncertainty
bValue measured by the developed SIDA-LC-MS/MS method ± SD calculated from the validation data
cThe status indicates whether the determined range (measured value ± SD) is below (−), within (ok) or above (+) the specification range (assigned value ± SD)
dThe sum of certified values for AFB1, AFB2, AFG1, AFG2 is not equal to the certified value of the sum of aflatoxins due to the different numbers of laboratories contributing to the determination