| Literature DB >> 34853353 |
Tao Lin1,2, Xinglian Chen1, Li Wang1, Haixian Fang1, Maoxuan Li1, Yangang Li1, Hongcheng Liu3,4.
Abstract
Eight new generation amide insecticide residues analysis by multiwalled carbon nanotubes (MWCNs) cleanup, combined with QuEChERS and ultrahigh performance liquid chromatography tandem mass spectrometry has been developed and successfully applied in complex matrix such as orange, celery, onion, litchi, mango, shallot, chives, avocado, garlic. The matric effect of MWCNs is optimized and compared with ordinary cleanup materials. The results show that the performance of MWCNs is fine and effectively reduce matrix interference. Through chemical structure skeletons analyzed, chlorantraniliprole, bromoantraniliprole, and cyantraniliprole can cause same product ions of m/z 286.0 or 177.1 in the ESI+ mode, then tetrachlorantraniliprole and cyclaniliprole can produce collective ions of m/z 146.9 in the ESI- mode. The coefficients (R2) were greater than 0.9990, the limit of quantification ranges from 0.03 to 0.80 μg/kg, the recovery rate ranges from 71.2 to 120%, and the relative standard deviation (RSD) ranges from 3.8 to 9.4%. The method is fast, simple, sensitive, and suitable for the rapid determination of amide pesticides in complex matrix agricultural food.Entities:
Year: 2021 PMID: 34853353 PMCID: PMC8636469 DOI: 10.1038/s41598-021-02645-w
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
UHPLC–MS/MS parameters for detection of the eight amide pesticides.
| Compound | Ionization mode | Precursor ion ( | Product ion ( | DP (V) | CE (V) |
|---|---|---|---|---|---|
| Chlorantraniliprole | ESI+ | 484.1 | 453.0a/286.0 | 58 | 24/29 |
| Bromoantraniliprole | ESI+ | 527.9 | 286.0a/177.1 | 60 | 24/68 |
| Flonicamid | ESI+ | 230.0 | 98.0a/146.0 | 73 | 53/43 |
| Cyantraniliprole | ESI+ | 475.0 | 286.0a/177.1 | 63 | 19/28 |
| Tolfenpyrad | ESI+ | 384.0 | 197.1a/154.1 | 60 | 36/57 |
| Flubendiamide | ESI− | 681.0 | 253.8a/272.0 | − 90 | − 37/− 24 |
| Tetrachlorantraniliprole | ESI− | 537.9 | 203.9a/146.9 | − 62 | − 16/− 47 |
| Cyclaniliprole | ESI− | 602.0 | 257.9a/146.9 | − 80 | − 21/− 47 |
aQuantitative ion.
Figure 1Three amide pesticides broken in positive mode.
Figure 2Tetrachlorantraniliprole and cyclaniliprole broken in negative mode.
Figure 3Response intensity of amide pesticides in different mobile phases.
Figure 4Chromatograms of amide pesticides.
Figure 5Matrix effect of amide pesticides under extraction conditions (A) cleaned up, (B) without cleanup.
Figure 6Different recovery of amide pesticides with PSA purification.
Figure 7Different purification materials to remove pigment (A) without cleanup materials, (B) multiwalled carbon nanotubes, (C) PSA.
Recoveries and relative standard deviations of amide pesticides.
| Matrix | Chlorantraniliprole | Bromoantraniliprole | Flonicamid | Cyantraniliprole | Tolfenpyrad | Flubendiamide | Tetrachlorantraniliprole | Cyclaniliprole | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Added (μg kg−1) | Recovery/%( RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | Added (μg kg−1) | Recovery/% (RSD/%) | |
| Orange | 0.15 | 99.9 (6.4) | 0.30 | 98.5 (8.7) | 0.80 | 72.0 (6.4) | 0.20 | 101 (8.2) | 0.03 | 98.9 (6.4) | 0.20 | 99.4 (5.0) | 0.10 | 111 (5.8) | 0.50 | 98.3 (5.2) |
| 0.75 | 94.3 (5.6) | 1.50 | 96.7 (7.8) | 4.00 | 75.4 (7.5) | 1.00 | 91.3 (6.4) | 0.15 | 94.6 (5.7) | 1.00 | 101 (5.4) | 0.50 | 106 (6.9) | 2.50 | 95.7 (6.1) | |
| 1.50 | 96.7 (5.9) | 3.00 | 99.4 (5.6) | 8.00 | 77.9 (4.6) | 2.00 | 95.4 (6.9) | 0.30 | 96.7 (6.0) | 2.00 | 99.7 (4.2) | 1.00 | 117 (4.6) | 5.00 | 97.9 (5.6) | |
| Celery | 0.15 | 106 (7.2) | 0.30 | 103 (7.7) | 0.80 | 78.0 (6.3) | 0.20 | 120 (8.3) | 0.03 | 87.7 (5.7) | 0.20 | 92.5 (5.8) | 0.10 | 110 (6.3) | 0.50 | 94.2 (6.3) |
| 0.75 | 101 (7.7) | 1.50 | 100 (5.4) | 4.00 | 79.1 (6.9) | 1.00 | 110 (6.7) | 0.15 | 89.5 (4.9) | 1.00 | 97.3 (6.4) | 0.50 | 112 (3.9) | 2.50 | 99.1 (5.7) | |
| 1.50 | 103 (6.7) | 3.00 | 105 (4.5) | 8.00 | 88.3 (4.8) | 2.00 | 107 (7.5) | 0.30 | 94.5 (5.2) | 2.00 | 95.8 (4.6) | 1.00 | 107 (4.7) | 5.00 | 96.8 (4.8) | |
| Onion | 0.15 | 73.7 (6.9) | 0.30 | 99.0 (9.1) | 0.80 | 78.1 (7.9) | 0.20 | 76.4 (7.6) | 0.03 | 82.1 (5.3) | 0.20 | 81.9 (7.2) | 0.10 | 90.2 (6.8) | 0.50 | 78.8 (6.9) |
| 0.75 | 77.7 (5.3) | 1.50 | 95.7 (8.4) | 4.00 | 88.7 (6.7) | 1.00 | 86.5 (5.6) | 0.15 | 87.3 (5.9) | 1.00 | 83.6 (6.8) | 0.50 | 98.8 (5.0) | 2.50 | 83.5 (5.4) | |
| 1.50 | 83.5 (6.2) | 3.00 | 99.7 (6.3) | 8.00 | 85.3 (7.5) | 2.00 | 84.7 (5.1) | 0.30 | 89.9 (4.9) | 2.00 | 88.6 (5.4) | 1.00 | 96.9 (5.4) | 5.00 | 87.9 (5.8) | |
| Litchi | 0.15 | 93.8 (5.9) | 0.30 | 91.8 (9.4) | 0.80 | 78.5 (6.7) | 0.20 | 87.6 (7.4) | 0.03 | 92.7 (4.8) | 0.20 | 101 (7.4) | 0.10 | 116 (6.9) | 0.50 | 97.8 (7.4) |
| 0.75 | 97.3 (4.6) | 1.50 | 96.4 (7.5) | 4.00 | 77.8 (7.3) | 1.00 | 89.5 (4.9) | 0.15 | 90.8 (4.3) | 1.00 | 100 (5.7) | 0.50 | 112 (4.6) | 2.50 | 96.6 (5.9) | |
| 1.50 | 95.6 (4.8) | 3.00 | 95.3 (8.8) | 8.00 | 83.1 (5.4) | 2.00 | 90.4 (5.0) | 0.30 | 95.9 (4.0) | 2.00 | 97.8 (8.3) | 1.00 | 117 (5.2) | 5.00 | 98.1 (6.1) | |
| Mango | 0.15 | 92.8 (4.8) | 0.30 | 95.0 (8.4) | 0.80 | 99.0 (6.3) | 0.20 | 101 (7.9) | 0.03 | 96.1 (4.3) | 0.20 | 100 (6.4) | 0.10 | 111 (7.5) | 0.50 | 97.4 (7.3) |
| 0.75 | 95.3 (5.1) | 1.50 | 94.2 (4.7) | 4.00 | 94.5 (7.2) | 1.00 | 91.9 (7.7) | 0.15 | 95.8 (6.5) | 1.00 | 108 (5.8) | 0.50 | 115 (6.3) | 2.50 | 95.6 (5.6) | |
| 1.50 | 98.2 (4.5) | 3.00 | 96.7 (5.2) | 8.00 | 95.6 (6.6) | 2.00 | 96.3 (6.6) | 0.30 | 97.4 (4.8) | 2.00 | 105 (5.6) | 1.00 | 112 (5.9) | 5.00 | 98.9 (6.0) | |
| Shallot | 0.15 | 94.0 (9.1) | 0.30 | 100 (8.8) | 0.80 | 74.1 (4.8) | 0.20 | 91.3 (6.4) | 0.03 | 93.0 (4.9) | 0.20 | 91.2 (5.9) | 0.10 | 114 (7.2) | 0.50 | 89.0 (8.5) |
| 0.75 | 97.3 (6.8) | 1.50 | 98.3 (6.1) | 4.00 | 77.4 (6.3) | 1.00 | 94.6 (5.5) | 0.15 | 96.2 (5.3) | 1.00 | 96.0 (5.5) | 0.50 | 115 (5.6) | 2.50 | 93.4 (5.8) | |
| 1.50 | 98.5 (7.5) | 3.00 | 103 (6.9) | 8.00 | 79.6 (4.0) | 2.00 | 98.4 (5.3) | 0.30 | 95.6 (6.7) | 2.00 | 95.6 (4.5) | 1.00 | 118 (4.8) | 5.00 | 96.5 (6.3) | |
| Chives | 0.15 | 113 (8.4) | 0.30 | 117 (9.2) | 0.80 | 77.5 (5.3) | 0.20 | 108 (6.0) | 0.03 | 82.9 (5.8) | 0.20 | 100 (9.0) | 0.10 | 113 (7.4) | 0.50 | 87.5 (3.8) |
| 0.75 | 111 (5.8) | 1.50 | 114 (7.5) | 4.00 | 75.2 (5.9) | 1.00 | 105 (6.7) | 0.15 | 88.6 (4.7) | 1.00 | 98.0 (5.6) | 0.50 | 116 (5.0) | 2.50 | 89.3 (4.3) | |
| 1.50 | 108 (6.0) | 3.00 | 118 (6.7) | 8.00 | 79.3 (4.7) | 2.00 | 109 (5.5) | 0.30 | 89.7 (5.0) | 2.00 | 95.9 (5.7) | 1.00 | 119 (5.5) | 5.00 | 93.2 (4.5) | |
| Avocado | 0.15 | 106 (5.3) | 0.30 | 111 (6.5) | 0.80 | 73.6 (5.1) | 0.20 | 99.5 (5.9) | 0.03 | 76.5 (6.3) | 0.20 | 103 (8.9) | 0.10 | 112 (6.9) | 0.50 | 97.7 (4.4) |
| 0.75 | 110 (5.9) | 1.50 | 115 (6.9) | 4.00 | 78.9 (6.3) | 1.00 | 96.8 (5.6) | 0.15 | 79.7 (5.7) | 1.00 | 109 (5.4) | 0.50 | 105 (4.2) | 2.50 | 95.4 (4.7) | |
| 1.50 | 108 (6.8) | 3.00 | 113 (5.5) | 8.00 | 79.4 (4.5) | 2.00 | 97.7 (4.6) | 0.30 | 87.9 (4.8) | 2.00 | 105 (6.5) | 1.00 | 107 (5.9) | 5.00 | 98.5 (5.3) | |
| Garlic | 0.15 | 73.5 (5.9) | 0.30 | 75.1 (5.8) | 0.80 | 71.9 (6.8) | 0.20 | 84.9 (5.8) | 0.03 | 71.2 (6.1) | 0.20 | 83.1 (8.6) | 0.10 | 95.7 (5.7) | 0.50 | 81.6 (5.3) |
| 0.75 | 78.6 (5.3) | 1.50 | 78.3 (5.6) | 4.00 | 83.4 (7.4) | 1.00 | 89.3 (3.9) | 0.15 | 73.6 (5.6) | 1.00 | 88.8 (6.8) | 0.50 | 97.2 (4.5) | 2.50 | 87.4 (4.2) | |
| 1.50 | 86.8 (4.5) | 3.00 | 76.7 (4.5) | 8.00 | 84.5 (6.0) | 2.00 | 90.5 (4.9) | 0.30 | 76.5 (4.9) | 2.00 | 89.6 (5.0) | 1.00 | 98.8 (4.3) | 5.00 | 92.8 (5.8) | |
Linear ranges, limits of quantitation (LOQs) and matrix effect of amide pesticides in different matrices.
| Matrix | Chlorantraniliprole | Bromoantraniliprole | Flonicamid | Cyantraniliprole | Tolfenpyrad | Flubendiamide | Tetrachlorantraniliprole | Cyclaniliprole | ||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | Linear ranges (ng mL−1) | LOQ (μg kg−1) | ME (%) | |
| Orange | 0.15–20.0 | 0.15 | 7.2 | 0.30–20.0 | 0.30 | 5.4 | 0.80–20.0 | 0.80 | − 8.8 | 0.20–20.0 | 0.20 | 5.5 | 0.03–20.0 | 0.03 | 4.9 | 0.20–20.0 | 0.20 | − 1.8 | 0.10–20.0 | 0.10 | 3.2 | 0.50–20.0 | 0.50 | − 6.0 |
| Celery | 2.7 | 6.9 | − 9.6 | 2.3 | 3.8 | 9.5 | 7.6 | 6.5 | ||||||||||||||||
| Onion | − 0.3 | 1.0 | − 8.1 | 2.9 | 4.9 | 9.0 | 2.2 | 6.5 | ||||||||||||||||
| Litchi | 6.9 | − 0.5 | − 2.2 | 6.2 | 4.9 | 8.6 | 4.3 | 2.5 | ||||||||||||||||
| Mango | 3.0 | 8.4 | 1.5 | 7.2 | 6.0 | 6.8 | 8.6 | 1.5 | ||||||||||||||||
| Shallot | − 2.7 | − 1.0 | − 5.1 | − 2.9 | 3.8 | 5.2 | 1.1 | − 8.0 | ||||||||||||||||
| Chives | 9.0 | 8.9 | − 6.6 | 7.8 | − 1.6 | 8.5 | 5.4 | 1.0 | ||||||||||||||||
| Avocado | 2.7 | 8.4 | 8.8 | 5.2 | − 1.1 | 8.2 | 2.2 | 8.0 | ||||||||||||||||
| Garlic | 1.2 | 3.4 | − 8.1 | 4.5 | 5.5 | 8.6 | 2.2 | 6.0 | ||||||||||||||||