| Literature DB >> 31121914 |
Antun Jozinović1, Bojan Šarkanj2, Đurđica Ačkar3, Jelena Panak Balentić4, Domagoj Šubarić5, Tanja Cvetković6, Jasmina Ranilović7, Sunčica Guberac8, Jurislav Babić9.
Abstract
The aim of this study was to develop a liquid chromatography/tandem mass spectrometry LC-MS/MS method for the simultaneous determination of acrylamide and hydroxymethylfurfural (HMF) in corn snack products enriched with food industry by-products: brewer's spent grain (BSG), sugar beet pulp (SBP) and apple pomace (AP). Development of the method included the study of different sources for ionization, different mobile phases, different extraction conditions as well as different methods of sample preparation. Finally, the single LC-MS/MS method was developed for the analysis of both analytes in one step with a duration of 20 min using a simple single-step extraction. The method with apparent recoveries of 91.4 and 90.4 for acrylamide and HMF, respectively, was applied for the analysis of non-extruded and extruded samples. The obtained results shown that the acrylamide content was <LOD (limit of detection) for all raw materials and non-extruded mixtures, while HMF increased proportionally to the content of added by-products in the mixtures. After the extrusion process, quantification of the acrylamide could be done in all samples. A higher amount of by-products entails higher contents of acrylamide and HMF, with the most significant effect in AP extrudates, where the highest content of HMF (6069 ± 789 ng/g) and acrylamide (5.37 ± 0.50 ng/g) in samples with 15% AP was observed.Entities:
Keywords: LC-MS/MS method; acrylamide; extruded snack products; hydroxymethylfurfural
Mesh:
Substances:
Year: 2019 PMID: 31121914 PMCID: PMC6572661 DOI: 10.3390/molecules24101971
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1The liquid chromatography/tandem mass spectrometry (LC-MS/MS) method developed for the determination of acrylamide and hydroxymethylfurfural (HMF) in extruded and non-extruded corn-based samples.
Validation parameters of the used LC-MS/MS method.
| Validation Parameters * | Acrylamide | 13C3-acrylamide | HMF | |
|---|---|---|---|---|
| Calibration curve equation | y = 6421.6x − 2739.3 | y = 7114.5x − 2567.8 | y = 205.38x + 6249.7 | |
| R2 | 0.997 | 0.998 | 0.999 | |
| LOD (ng/g) | 0.62 | 0.58 | 18.9 | |
| LOQ (ng/g) | 1.89 | 1.75 | 57.5 | |
| Retention time (min) | 9.10 ± 0.07 | 9.10 ± 0.06 | 13.3 ± 0.08 | |
| RA (%) | Lower concentration | 91.2 | 91.9 | 90.0 |
| Higher concentration | 91.6 | 92.3 | 90.9 | |
| Average | 91.4 | 92.1 | 90.4 | |
| RE (%) | Lower concentration | 92.7 | 93.1 | 91.2 |
| Higher concentration | 93.0 | 93.9 | 94.2 | |
| Average | 92.8 | 93.5 | 92.7 | |
| SSE (%) | Lower concentration | 98.5 | 98.8 | 98.7 |
| Higher concentration | 98.5 | 98.3 | 96.5 | |
| Average | 98.5 | 98.5 | 97.6 | |
| RSD Intraday (%) | Lower concentration | 2.89 | 2.77 | 3.17 |
| Higher concentration | 2.86 | 2.91 | 3.15 | |
| Average | 2.88 | 2.84 | 3.16 | |
| RSD Interday (%) | Lower concentration | 3.12 | 3.01 | 3.36 |
| Higher concentration | 3.06 | 3.08 | 3.43 | |
| Average | 3.09 | 3.05 | 3.40 | |
R2—regression coefficient; LOD—limit of detection; LOQ—limit of quantification; RA—apparent recovery; RE—extraction efficiency; SSE—signal suppression/enhancement; RSD—relative standard deviation; * n = 6 for recovery and precison experiments at two concetration levels (lower concentration: 5 ng/g for acrylamide and 13C3-acrylamide and 100 ng/g for HMF; higher concentration: 10 ng/g for acrylamide and 13C3-acrylamide and 250 ng/g for HMF.
Figure 2Chromatograms of the: (a) standard solution of acrylamide, 13C3-acrylamide and HMF (500 ng/mL); (b) standard solution of acrylamide and 13C3-acrylamide (5 ng/mL) and extruded sample with detected 2.01 ng/g of acrylamide; (c) standard solution of HMF (2500 ng/mL) and extruded sample with detected 1180 ng/g of HMF.
Acrylamide and HMF contents in raw materials.
| Sample * | Acrylamide | HMF |
|---|---|---|
| Corn grits | <LOD | 63.0 ± 3.00 a |
| BSG | <LOD | 5634 ± 11.0 a |
| SBP | <LOD | 658 ± 15.8 a |
| AP | <LOD | 16,019 ± 978 b |
Acrylamide and HMF contents in non-extruded and extruded samples.
| Sample* | Non-Extruded | Extruded | ||
|---|---|---|---|---|
| Acrylamide (ng/g) | HMF (ng/g) | Acrylamide (ng/g) | HMF (ng/g) | |
| Corn grits | <LOD | 63.0 ± 3.00 a | 2.25 ± 0.29 a | 174 ± 2.21 a |
| Corn + 5% BSG | <LOD | 68.2 ± 3.31 a | 2.74 ± 0.02 a,b | 192 ± 5.36 a |
| Corn + 10% BSG | <LOD | 78.4 ± 4.89 a | 2.86 ± 0.05 a,b | 290 ± 18.9 a |
| Corn + 15% BSG | <LOD | 83.8 ± 4.89 a | 3.13 ± 0.23 b | 301 ± 12.6 a |
| Corn + 5% SBP | <LOD | 86.0 ± 0.47 a | 2.59 ± 0.02 a,b | 173 ± 11.2 a |
| Corn + 10% SBP | <LOD | 88.1 ± 1.26 a | 2.68 ± 0.07 a,b | 224 ± 30.5 a |
| Corn + 15% SBP | <LOD | 90.6 ± 0.32 a | 3.00 ± 0.21 b | 317 ± 9.47 a |
| Corn + 5% AP | <LOD | 421 ± 20.5 b | 3.98 ± 0.07 c | 971 ± 85.2 b |
| Corn + 10% AP | <LOD | 801 ± 37.9 c | 4.93 ± 0.71 d | 2622 ± 110 c |
| Corn + 15% AP | <LOD | 1277 ± 11.0 d | 5.37 ± 0.50 d | 6069 ± 789 d |